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Journal of Medicine and Pharmacy","Tạp chí Y Dược học Cần Thơ",{"EN":487,"VI":488},"\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">04\u002F10\u002F2015 Ministry of Information and Communications allowed Can Tho journal of medicine and pharmacy to operate (102 \u002FGP-BTTTT)\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">07\u002F16\u002F2015 Can Tho journal of medicine and pharmacy is internationally recognized: ISSN 2354-1210\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">In 2016, The journal has been included in the list of medical science journals by The State Council for professorship which is awarded a work score of 0-0.5 points for a published article.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Can Tho Journal of Medicine and Pharmacy welcome original works that haven’t been submitted or published in other medical journals. Posts must contain content related to one of the journal’s categories.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">The content published\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">The journal is divided into 3 categories:\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">- Scientific research article: are valuable scientific works, which have been researched and accepted.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">- Overview of medicine, biology and pharmacy: serving the objective of continuing training in the fields of medicine, biology and pharmacy; to systematize classical and modern knowledge.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">- Update information on new knowledge about medicine, biology, pharmacy in the country and in the world.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Scope\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">- Publication and introduction of scientific research in the fields:\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">+ Medicine (internal medicine, surgery, pediatrics, obstetrics and gynecology, odonto-stomatology, laboratory, oncology, traditional medicine, nursing).\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">+ Biology (genetics, biotechnology).\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">+ Pharmacology (pharmaceutics, drug quality analysis-control, synthetic pharmaceutical chemistry, biochemistry, pharmacognosy, botany, clinical pharmacy).\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">- To enhance the quality of undergraduate, postgraduate education, scientifically researching and meet the necessary treatment in hospital.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">- Introducing the updated domestic and oversea information about science technology to promote scientific research and exchanging technology in local, other universities.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">- Exchanging pharmaceutical and medical information for social health developing in the Mekong Delta and Vietnam.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">The object\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Postgraduate students, student of Can Tho University of Medicine and Pharmacy, scientists from schools, research institutes, hospitals, health centers, pharmaceutical companies of the Mekong Delta; other provinces and regions in Vietnam and other country.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Address\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Headquarters of Can Tho Journal of Medicine and Pharmacy, located Scientific Research and International Cooperation Office: 179 Nguyen Van Cu Street, An Khanh Ward, Ninh Kieu District, Can Tho City, Vietnam.\u003C\u002Fspan>\u003C\u002Fp>","\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Ngày 16\u002F7\u002F2015, Tạp chí Y Dược học Cần Thơ được cấp chỉ số quốc tế: ISSN 2354-1210.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Từ tháng 4\u002F2016, Tạp chí đã được Hội đồng Giáo sư ngành Y đưa vào danh sách các tạp chí khoa học Y học được tính điểm công trình 0-0,5 điểm cho một bài báo đăng.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Năm 2020 Tạp chí Y Dược học Cần Thơ đã được phê duyệt vào danh mục của các Hội đồng Giáo sư ngành Dược học được tính điểm công trình 0-0,5 điểm cho một bài báo đăng.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tạp chí Y Dược học Cần Thơ ra 12 số\u002Fnăm, 180-200 trang\u002Fsố.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Từ tháng 12\u002F2022 Tạp chí Y Dược học Cần Thơ là thành viên của hệ thống Crossref và từ tháng 01\u002F2023 tạp chí thực hiện bình duyệt online kín 2 chiều nhằm tăng tính minh bạch, tin cậy của các công trình nghiên cứu khoa học và đảm bảo tốt nhất chất lượng khoa học của bài viết.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tôn chỉ, mục đích và phạm vi của tạp chí\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tôn chỉ và mục đích hoạt động của tạp chí: xuất bản nhằm mục đích phổ biến kết quả từ các đề tài nghiên cứu khoa học; giao lưu trao đổi khoa học, chia sẻ kinh nghiệm, học tập, đồng thời cập nhật thông tin khoa học mới trong các lĩnh vực y, sinh, dược học trong và ngoài nước.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Phạm vi của tạp chí: Tạp chí xuất bản được chia thành 3 chuyên mục: (i) Bài báo nghiên cứu khoa học là kết quả công trình nghiên cứu khoa học có giá trị đã được triển khai nghiên cứu, (ii) Bài tổng quan y, sinh, dược học: phục vụ mục tiêu đào tạo liên tục trong lĩnh vực y, sinh, dược học; nhằm hệ thống hóa những kiến thức kinh điển và hiện đại; (iii) Thông tin cập nhật kiến thức mới về y, sinh, dược học trong nước và trên thế giới.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Chính sách truy cập mở\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tạp chí Y Dược học Cần Thơ áp dụng chính sách truy cập mở đối với các bài báo đã xuất bản đến với độc giả, nhằm mở rộng cơ hội tiếp cận các kết quả nghiên cứu chất lượng cao và tăng cường trao đổi kiến thức. Tạp chí đăng tải trực tuyến (miễn phí) toàn văn các bài báo được công bố trên website của Tạp chí (https:\u002F\u002Ftapchi.ctump.edu.vn).\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Đạo đức xuất bản\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tạp chí Y Dược học Cần Thơ cam kết tuân thủ đạo đức xuất bản phù hợp với các hướng dẫn và tiêu chuẩn của the Committee on Publication Ethics (COPE), tuân thủ các nguyên tắc của COPE’s Core Practices, Best Practices Guidelines for Journal Editors và Guidelines on Good Publication Practices.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Bản thảo bài báo chỉ được chấp nhận khi được tác giả chịu trách nhiệm chính cam kết các nội dung sau: Các nội dung của bản thảo chưa được đăng tải toàn bộ hoặc một phần ở các tạp chí khác; Tất cả các tác giả đều có đóng góp một cách đáng kể vào quá trình nghiên cứu hoặc chuẩn bị bản thảo và cùng chịu trách nhiệm về các nội dung của bản thảo; Tuân thủ các biện pháp đảm bảo đạo đức nghiên cứu (ví dụ thỏa thuận đồng ý tham gia nghiên cứu).\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Cam kết bảo mật\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tạp chí cam kết thực hiện và tuân thủ các quy định của luật và các văn bản hướng dẫn liên quan đến bảo mật thông tin cá nhân trên không gian mạng. Các thông tin mà người dùng (tác giả, độc giả, biên tập viên, người phản biện) nhập vào các biểu mẫu trên Hệ thống Quản lý xuất bản trực tuyến của tạp chí chỉ được sử dụng vào các mục đích đã được tuyên bố rõ ràng và sẽ không được cung cấp cho bất kỳ bên thứ ba nào khác, hay dùng vào bất kỳ mục đích nào khác.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Phí gửi bài\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Lệ phí gửi đăng bài: 1.000.000đ\u002Fbài báo\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Lệ phí gửi đăng nhanh: 1.500.000đ\u002Fbài báo\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Đối với tác giả là cán bộ viên chức thuộc Trường Đại học Y Dược Cần Thơ thì được hỗ trợ 50% lệ phí gửi đăng bài.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Đối với sinh viên thực hiện đề tài nghiên cứu khoa học cấp trường được hỗ trợ 100% lệ phí đăng bài ( Tác giả gửi đính kèm “ Quyết định về việc giao tổ chức thực hiện đề tài nghiên cứu khoa học cấp Trường của sinh viên”).\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Hình thức nộp lệ phí:\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">1. Tiền mặt:\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Nộp trực tiếp tại Phòng Tài chính - Kế toán, Trường Đại học Y Dược Cần Thơ, số 179 Nguyễn Văn Cừ, P. An Khánh, Q. Ninh Kiều, thành phố Cần Thơ.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">2. Chuyển khoản:\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tên Tài khoản: Trường ĐHYD Cần Thơ, Số TK: 0111000115668, tại ngân hàng Vietcombank chi nhánh Cần Thơ.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Thời gian: Áp dụng từ ngày 01\u002F02\u002F2023.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">* Phí gửi bài không được hoàn trả khi bài viết bị từ chối hoặc tác giả xin rút bài viết.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Quy trình phản biện bài báo\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tạp chí Y Dược học Cần Thơ thực hiện quy trình phản biện kín hai chiều nghiêm ngặt. Danh tính của những người phản biện không được tiết lộ cho các tác giả và ngược lại. Quy trình thẩm định bài báo đăng gồm các bước sau:\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tiếp nhận bản thảo\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tác giả liên hệ gửi bản thảo đến Tạp chí qua hệ thống trực tuyến tại website: https:\u002F\u002Ftapchi.ctump.edu.vn. Hướng dẫn về cách đăng ký, gửi bài và chuẩn bị bản thảo được cung cấp trên website của Tạp chí.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Sàng lọc sơ bộ\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Sau khi Tòa soạn nhận được bài báo của tác giả, Ban Thư ký sẽ tiến hành kiểm tra sơ bộ bài báo (các yêu cầu về nội dung và hình thức). Những bài báo không đúng quy cách hoặc có nội dung không phù hợp hoặc vi phạm bản quyền sẽ bị từ chối (Ban Thư ký thông báo phản hồi đến tác giả trong vòng 1 tuần). Những bài báo đủ điều kiện, được Ban Thư ký tòa soạn chuyển đến Ban Biên tập có cùng chuyên môn với nội dung bài báo để đề xuất người phản biện. Thời gian kể từ khi Ban Biên tập nhận bài báo đến khi đề xuất người phản biện bài báo chậm nhất là 5 ngày.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Vòng phản biện\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">1. Ban Thư ký gửi bài và yêu cầu phản biện đến 02 phản biện độc lập.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">2. Các phản biện gởi nhận xét cho Ban Thư ký. Thời gian từ khi gửi bài cho phản biện đến khi nhận ý kiến của phản biện tối đa là 20 ngày.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Xử ký kết quả phản biện\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">1. Nếu ý kiến đồng ý cho đăng và không cần chỉnh sửa, Ban Thư ký tiếp tục đăng bài theo qui trình.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">2. Nếu ý kiến đồng ý đăng và cần chỉnh sửa, Ban Thư ký sẽ thông tin đến tác giả chỉnh sửa theo yêu cầu của người phản biện. Thời gian chỉnh sửa và gửi lại kéo dài không quá 2 tuần, từ khi tác giả bài báo nhận được thông tin (Quá trình này có thể lặp lại tối đa 2 lần\u002F1 bài báo). Khi có sự thống nhất, đồng ý của người phản biện; bài báo được tiếp tục đăng theo qui trình.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">3. Những bài báo có chất lượng không đạt yêu cầu, cả 2 phản biện không đồng ý cho đăng sẽ bị Tòa soạn từ chối đăng.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Xuất bản\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">1. Ban Thư ký tổng hợp các bản thảo đã được tác giả hoàn thiện sau thẩm định trình Ban Biên tập xem xét, Tổng Biên tập phê duyệt, quyết định bài đăng theo các tiêu chí: sự phù hợp nội dung với tôn chỉ và mục đích, thể loại bài viết (ưu tiên các bài có bài có nghiên cứu chuyên sâu, hàm lượng khoa học cao), đóng góp mới bài báo, bài báo được ưu tiên đăng trong số gần nhất của Tạp chí theo thứ tự: tính thời sự, chất lượng bài báo và thời gian gửi bài.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">2. Ban Biên tập và Ban Thư ký biên tập bản thảo, chế bản, đọc rà soát lỗi. Thời gian hoàn thành từ 10-15 ngày.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">3. Ban Thư ký có trách nhiệm thông báo cho tác giả bài báo (bằng e-mail) về tình hình phê duyệt bài báo, thời gian, số kỳ, tập xuất bản bài báo theo qui định.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">4. Danh sách bài báo theo số Tạp chí được in ấn và phát hành trong năm định kỳ được công bố chính thức trên website: https:\u002F\u002Ftapchi.ctump.edu.vn\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>",{"VOID":490},"wcQ1uqwAAAAJ","2023-05-30T08:17:21.868+00:00",[],[494],{"id":495,"createTime":28,"updateTime":28,"relativeEntities":496,"slug":28,"properties":497,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":507,"parentIds":508,"statistic":28},"6413896b-eca9-442b-a73f-182a58a0ce40",[],{"title":498,"address":501,"country":504,"abbreviation":505},{"EN":499,"VI":500},"Can Tho University of Medicine and Pharmacy","Trường Đại học Y Dược Cần Thơ",{"EN":502,"VI":503},"No 179, Nguyen Van Cu street, An Khanh ward, Ninh Kieu district, Can Tho city, Vietnam","Số 179, đường Nguyễn Văn Cừ, phường An Khánh, quận Ninh Kiều, thành phố Cần Thơ, Việt Nam",{"VOID":15},{"VOID":506},"ctump","http:\u002F\u002Fwww.ctump.edu.vn\u002F",[],[],"https:\u002F\u002Ftapchi.ctump.edu.vn\u002Findex.php\u002Fctump",{"impactFactor":32,"impactFactorByYear":512,"i10Index":32,"i10IndexLast5Year":32,"totalPublication":514,"totalPublicationByYear":515,"totalCitation":520,"totalCitationByYear":521,"totalCitationPerPublication":108,"totalCitationPerPublicationByYear":523,"hindexLast5Year":45,"hindex":45},{"2022":513,"2023":111,"2024":106},0.01,1556,{"2020":47,"2021":516,"2022":517,"2023":518,"2024":519,"2025":122},57,306,801,358,161,{"2021":146,"2022":280,"2023":522},99,{"2021":524,"2022":318,"2023":104},0.23,{"impactFactor":28,"impactFactorByYear":28,"i10Index":123,"i10IndexLast5Year":123,"totalPublication":526,"totalPublicationByYear":527,"totalCitation":526,"totalCitationByYear":528,"totalCitationPerPublication":40,"totalCitationPerPublicationByYear":531,"hindexLast5Year":49,"hindex":49},476,{"0":205,"2019":123,"2021":139,"2022":459,"2023":451,"2024":357,"2025":49,"2026":48},{"2021":42,"2022":123,"2023":161,"2024":529,"2025":360,"2026":530},136,83,{"2021":105,"2022":513,"2023":532,"2024":127,"2025":533,"2026":534},0.62,25.43,13.83,{"id":536,"createTime":537,"updateTime":382,"relativeEntities":538,"slug":539,"properties":540,"entityType":25,"verifyStatus":26,"verifyTime":28,"verifyNote":28,"languages":552,"translateLanguages":28,"viewCount":133,"subjectFields":553,"manageAffiliations":554,"indexDatabases":555,"url":556,"thumbnailPath":557,"statistic":558,"gsStatistic":594,"type":55,"analyzePriority":28},"6984a56a-db70-403b-9cc4-4013e1ceaffa","2023-05-09T06:47:40.346+00:00",[],"T%E1%BA%A1p%20ch%C3%AD%20Nghi%C3%AAn%20c%E1%BB%A9u%20n%C6%B0%E1%BB%9Bc%20ngo%C3%A0i",{"country":541,"issn":542,"title":544,"introduce":547,"gsId":550},{"VOID":15},{"VOID":543},"25252445",{"EN":545,"VI":546},"VNU Journal of Foreign Studies","Tạp chí Nghiên cứu nước ngoài",{"EN":548,"VI":549},"{\"ops\":[{\"insert\":\"\\n\\nThe \\n\"},{\"attributes\":{\"italic\":true},\"insert\":\"VNU Journal of Science\"},{\"insert\":\"\\n was established in 1985 for the publication of national and international research papers in all fields of natural sciences and technology, social sciences and humanities. 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paper is dedicated to the design of efficient antimicrobial pharmaceuticals based on chitosan. Chitosan with a deacetylation degree of 0.98 preliminarily treated with supercritical carbon dioxide (scCO2) was impregnated with organometallic complexes (silver cyclooctadiene(hexafluoroacetylacetonate) and copper hexafluoroacetylacetonate) from an scCO2 solution followed by reduction with hydrogen to form metal-chitosan composites. Their structure was studied by small-angle X-ray scattering (SAXS). A narrow virtually monodisperse size distribution with a preferable particle size of 1–3 nm was found for silver and a wider polymodal size distribution with a particle size of up to 1–40 nm was revealed for copper. An X-ray fluorescent analysis showed the content of silver and copper metal to be 6 and 4.6%, respectively. The composites prepared by fluid technology were tested for antimicrobial activity toward bacteria S. epidermidis, E. coli, and a spore form of bacteria B. cereus in comparison with Cu2+-chitosan complexes obtained by the routine solution procedure. Ag0-chitosan nanocomposites were found to show bactericidal activity toward all the noted bacteria and spore forms, whereas Cu2+-chitosan complexes exhibit bacteriostatic activity toward the above bacteria and a lack of bactericidal properties toward the spore forms. The reasons for the bactericidal activity of the prepared composites are discussed.",{"EN":929},"Synthesis of Ag and Cu-chitosan metal-polymer nanocomposites in supercritical carbon dioxide medium and study of their structure and antimicrobial activity",{"VOID":931},"A. D. Pomogailo, A. S. Rozenberg, and I. E. Uflyand, Metal Nanoparticles in Polymers (Khimiya, Moscow, 2000) [in Russian].\nYu. A. Krutyakov, A. A. Kudrinskii, A. Yu. Olenin, and G. V. Lisichkin, Usp. Khim. 77(3), 242–268 (2008).\nJ. R. Morones, J. L. Elichiguerra, A. Camacho, K. Holt, J. B. Kouri, J. T. Ramires, and M. J. Yacaman, Nanotechnology 16, 2346 (2005).\nR. A. A. Musarelly, Chitin (Pergamon, Oxford, 1977).\nA. I. Gamzazade, Doctoral Dissertation in Chemistry (RGB, Moscow, 2005).\nZhanyong Guo, Hongying Liu, Xiaolin Chen, Xia Ji, and Pengcheng Li, Bioorg. Med. Chem. Lett. 16(24), 6348–6350 (2006).\nLifeng Qi and Zirong Xu, Bioorg. Med. Chem. Lett. 16(16), 4243–4245 (2006).\nM. Hagesava, K. Yagi, S. Iwakawa, and M. Hirai, Jpn. J. Cancer Res. 72(5), 87–100 (2001).\nLifeng Qi, Zirong Xu, Xia Yang, Yan Li, and Mingi Wang, Bioorg. Med. Chem. Lett. 15(5), 1397–1399 (2005).\nJung-Kul Lee, Hyun-Soo Lim, and Jung-Hoe Kim, Bioorg. Med. Chem. Lett. 12(20), 2949–2951 (2002).\nLifeng Qi, Zirong Xu, Xia Jang, Calhong Hu, and Xiangfei Zou, Carbohydr. Res. 339, 2693–2700 (2004).\nZhi Li, Xu Pin Zhuang, Xiao Fei Liu, Yun Lin Guan, and Kang De Yao, Polymer 43, 1541–1547 (2002).\nZhishen Jia, Dongfeng shen, and Weiliang Xu, Carbohydr. Res. 333, 1–6 (2001).\nHong Kyoon No, Na Yaoung Park, Shin Ho Lee, and Samuel P. Meyers, Int. J. Food Microbiol. 74, 65–72 (2002).\nK. Roy, H. Q. Mao, S. K. Huang, and K. W. Leong, Nat. Med. 5, 387–391 (1999).\nM. Kumar., A. K. Behera, R. F. Lockey, J. Zhang, J. Bhullar, C. P. De La Cruz, L. C. Chen, K. W. leong, S. K. Huang, and S. S. Mahapatra, Hum. Gene Ther. 13, 1415–1425 (2002).\nG. J. Tsai and W.-H. Su, J. Food Prot. 62, 2239–2243 (1999).\nD. Yu. Zalepugin, A. I. Gamzazade, N. A. Til’kunova, V. S. Mishin, I. V. Chernysheva, and A. R. Khokhlov, Sverkhkrit. Flyuidy 3(1), 24–32 (2008).\nM. O. Gallyamov, I. S. Chaschin, A. I. Gamzazade, and A. R. Khokhlov, Macromol. Chem. Phys. 209, 2204–2212 (2008).\nS. S. Resetskii, S. R. Vogdanovish, and N. K. Mushkin, Trenie Iznos 28(5), 500–524 (2007) [Frict. Wear 28 (5), 457–475 (2007)].\nA. R. Krasnov, O. V. Afonisheva, V. A. Mit’, V. B. Bazhenova, T. V. Volkova, O. V. Sinitsyna, Ya. S. Vygodskii, I. A. Rashkovan, and M. E. Kazakov, Trenie Iznos 30(5), 341–346 (2009) [Frict. Wear 30 (5), 350–355 (2009)].\nE. N. Sobol’, V. N. Bagratashvili, V. K. Popov, A. E. Sobol’, E. E. Said-Galiev, and L. N. Nikitin, Zh. Fiz. Khim. 72(1), 23–26 (1998) [Russ. J. Phys. Chem. A 72 (1), 23–26 (1998)].\nE. N. Sobol’, V. N. Bagratashvili, A. E. Sobol’, and S. M. Howdle, Dokl. Akad. Nauk 356(4–6), 777–780 (1997) [Dokl. Phys. Chem. 356 (4–6), 346–348 (1997)].\nA. R. Berence, G. S. Huvard, R. V. Korsmeier, and R. V. Kunig, J. Appl. Polym. Sci. 46, 231 (1992).\nE. E. Said-Galiev, Y. S. Vygodskii, L. N. Nikitin, R. A. Vinokur, A. R. Khokhlov, I. V. Pototskaya, V. V. Kireev, and K. Schaumburg, Vysokomol. Soedin., Ser. A 46(4), 634–648 [Polym. Sci. Ser. A 46 (4), 377–380 (2004)].\nA. N. Fedotov, A. P. Simonov, V. K. Popov, and V. N. Bagratashvili, J. Phys. Chem. B 101, 2929–2932 (1997).\nL. N. Nikitin, M. O. Gallyamov, R. A. Vinokur, A. Yu. Nikolaev, E. E. Said-Galiyev, A. R. Khokhlov, H. T. Jespersen, and K. Schaumburg, J. of Supercrit. Fluids 26, 263–273 (2003).\nMethods of Quantitative Elemental Microanalysis, Ed. by N. E. Gel’man (Khimiya, Moscow, 1987) [in Russian].\nL. A. Feigin and D. I. Svergun, Structure Analysis by Small-Angle X-Ray and Neutron Scattering (Plenum, New York, 1987).\nP. V. Konarev, V. V. Volkov, A. V. Sokolova, M. H. J. Koch, and D. I. Svergun, J. Appl. Crystallogr. 36, 1277–1282 (2003).\nD. I. Svergun, J. Appl. Crystallogr. 25, 495 (1992).\nE. V. Shtykova, K. A. Dembo, V. V. Volkov, E. E. Said-Galiev, A. I. Stakhanov, and A. R. Khokhlov, Ross. Nanotekhnol. 4(9–10), 136–143 (2009) [Nanotechnol. Russ. 4 (9–10), 700–710 (2009)].\nI. A. Basnak’yan, Stress of Bacteria (Meditsina, Moscow, 2003) [in Russian].",{"VOID":933},"10.1134\u002FS1995078011030153","PUBLICATION","Auto Verify","http:\u002F\u002Flink.springer.com\u002F10.1134\u002FS1995078011030153",[938,954,967,980,993,1008,1021,1036,1049],{"id":939,"sortIndex":32,"researcher":28,"roles":940,"affiliations":942,"properties":951,"displayName":953,"givenName":28,"familyName":28},"e88b4300-08ab-44b6-add1-c100b2e8faad",[941],"AUTHOR",[943],{"id":944,"sortIndex":32,"affiliation":945,"properties":28},"1641de09-74a9-4afc-b39d-3752ca1431b4",{"id":944,"createTime":28,"updateTime":28,"relativeEntities":946,"slug":28,"properties":947,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":950,"statistic":28},[],{"title":948},{"VI":949},"Nesmeyanov Institute of Organoelement Compounds, Russian Academy of Sciences, Moscow, Russia",[],{"title":952},{"VI":953},"E. E. 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Grigor’ev",{"id":981,"sortIndex":42,"researcher":28,"roles":982,"affiliations":983,"properties":990,"displayName":992,"givenName":28,"familyName":28},"1fa9a680-facc-4c35-a689-9d3d92f92a37",[941],[984],{"id":944,"sortIndex":32,"affiliation":985,"properties":28},{"id":944,"createTime":28,"updateTime":28,"relativeEntities":986,"slug":28,"properties":987,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":989,"statistic":28},[],{"title":988},{"VI":949},[],{"title":991},{"VI":992},"A. R. Khokhlov",{"id":994,"sortIndex":45,"researcher":28,"roles":995,"affiliations":996,"properties":1005,"displayName":1007,"givenName":28,"familyName":28},"867e164a-8571-43a4-ae7f-01d8e7ed4cc2",[941],[997],{"id":998,"sortIndex":32,"affiliation":999,"properties":28},"ce8712b4-3812-4ade-b057-5250c4a26a6c",{"id":998,"createTime":28,"updateTime":28,"relativeEntities":1000,"slug":28,"properties":1001,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1004,"statistic":28},[],{"title":1002},{"VI":1003},"Bakulev Research Center for Cardiovascular Surgery, Russian Academy of Medical Sciences, Moscow, Russia",[],{"title":1006},{"VI":1007},"N. P. Bakuleva",{"id":1009,"sortIndex":46,"researcher":28,"roles":1010,"affiliations":1011,"properties":1018,"displayName":1020,"givenName":28,"familyName":28},"fdb75c45-e443-49cc-bb3b-0329a850dc44",[941],[1012],{"id":998,"sortIndex":32,"affiliation":1013,"properties":28},{"id":998,"createTime":28,"updateTime":28,"relativeEntities":1014,"slug":28,"properties":1015,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1017,"statistic":28},[],{"title":1016},{"VI":1003},[],{"title":1019},{"VI":1020},"I. G. Lyutova",{"id":1022,"sortIndex":48,"researcher":28,"roles":1023,"affiliations":1024,"properties":1033,"displayName":1035,"givenName":28,"familyName":28},"2c13079b-8b7e-41d9-b4bf-37f879c3f0ac",[941],[1025],{"id":1026,"sortIndex":32,"affiliation":1027,"properties":28},"15b22f07-d552-4cdf-8970-138534160289",{"id":1026,"createTime":28,"updateTime":28,"relativeEntities":1028,"slug":28,"properties":1029,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1032,"statistic":28},[],{"title":1030},{"VI":1031},"Shubnikov Institute of Crystallography, Russian Academy of Sciences, Moscow, Russia",[],{"title":1034},{"VI":1035},"E. V. Shtykova",{"id":1037,"sortIndex":49,"researcher":28,"roles":1038,"affiliations":1039,"properties":1046,"displayName":1048,"givenName":28,"familyName":28},"2327da34-8714-44a0-b0d8-582a46e8e21f",[941],[1040],{"id":1026,"sortIndex":32,"affiliation":1041,"properties":28},{"id":1026,"createTime":28,"updateTime":28,"relativeEntities":1042,"slug":28,"properties":1043,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1045,"statistic":28},[],{"title":1044},{"VI":1031},[],{"title":1047},{"VI":1048},"K. A. Dembo",{"id":1050,"sortIndex":357,"researcher":28,"roles":1051,"affiliations":1052,"properties":1059,"displayName":1061,"givenName":28,"familyName":28},"4f02e4e0-f196-4b9c-bfa4-3c3f024d7085",[941],[1053],{"id":1026,"sortIndex":32,"affiliation":1054,"properties":28},{"id":1026,"createTime":28,"updateTime":28,"relativeEntities":1055,"slug":28,"properties":1056,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1058,"statistic":28},[],{"title":1057},{"VI":1031},[],{"title":1060},{"VI":1061},"V. V. Volkov","ARTICLE",{"url":936,"publisher":1064,"properties":1084},{"id":868,"createTime":869,"updateTime":870,"relativeEntities":1065,"slug":872,"properties":1066,"entityType":25,"verifyStatus":880,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":32,"subjectFields":1070,"manageAffiliations":1071,"indexDatabases":1072,"url":28,"thumbnailPath":28,"statistic":1079,"gsStatistic":28,"type":28,"analyzePriority":28},[],{"issn":1067,"title":1068,"eissn":1069},{"VOID":875},{"EN":877},{"VOID":879},[],[],[1073],{"id":885,"indexDatabase":1074,"url":891,"indexYears":892,"academicFieldIds":28,"indexDatabaseRanking":893},{"id":775,"createTime":28,"updateTime":28,"relativeEntities":1075,"label":1076,"description":1077,"key":781,"publicationTags":1078,"standard":28},[],{"EN":778,"VI":778},{"EN":778,"VI":780},[783],{"impactFactor":32,"impactFactorByYear":1080,"i10Index":142,"i10IndexLast5Year":123,"totalPublication":899,"totalPublicationByYear":1081,"totalCitation":901,"totalCitationByYear":1082,"totalCitationPerPublication":903,"totalCitationPerPublicationByYear":1083,"hindexLast5Year":199,"hindex":199},{"2012":424,"2013":840,"2014":284,"2015":698,"2016":896,"2017":897,"2018":898,"2019":367,"2020":286,"2021":821,"2022":123},{"2008":145,"2009":357,"2010":323,"2011":145,"2012":205,"2013":135,"2014":126,"2015":145,"2016":51,"2017":357,"2018":129,"2019":48,"2020":49},{"2008":574,"2009":329,"2010":607,"2011":151,"2012":565,"2013":578,"2014":156,"2015":139,"2016":688,"2017":152,"2018":158,"2019":134,"2020":281},{"2008":905,"2009":906,"2010":907,"2011":908,"2012":145,"2013":909,"2014":48,"2015":910,"2016":45,"2017":911,"2018":912,"2019":913,"2020":914},{"pages":1085,"volume":1087},{"VOID":1086},"341-352",{"VOID":1088},"6","2011-06-18",2011,[893],false,{"id":1094,"createTime":1095,"updateTime":1096,"relativeEntities":1097,"slug":1098,"properties":1099,"entityType":934,"verifyStatus":26,"verifyTime":1096,"verifyNote":935,"languages":28,"translateLanguages":28,"viewCount":32,"primaryUrl":1108,"fullTextUrl":28,"authors":1109,"publicationType":1062,"publisherRelationship":1164,"citationCount":28,"citationInfo":28,"publishDate":1189,"publishYear":1090,"citationAnalyzeStatus":880,"lastCitationAnalyze":28,"indexDatabases":1190,"openAccess":28,"references":28,"isForceReanalyzing":1092},"006c39da-2c74-45eb-8490-4989e181d736","2023-12-27T11:54:32.598+00:00","2024-12-07T20:32:03.420+00:00",[],"Features-of-the-formation-of-porous-alumina-mask-for-local-plasma-etching-of-semiconductors",{"abstract":1100,"title":1102,"references":1104,"doi":1106},{"EN":1101},"The features of formation of porous alumina masks for silicon nanoprofiling were investigated. The influence of micromorphology on the property of the local etching of silicon on the interface of an anodized double-layer structure of Al-Ti was shown. The correlation between the aspect ratio of alumina pores and the geometrical parameters of the porous silicon was investigated.",{"EN":1103},"Features of the formation of porous alumina mask for local plasma etching of semiconductors",{"VOID":1105},"Nanotechnologies in Electronics, Ed. by Yu. A. Chaplygin (Tekhnosfera, Moscow, 2005) [in Russian].\nS. J. Tans, A. R. M. Verschueren, and C. Dekker, “Room-Temperature Transistor Based on a Single Carbon Nanotube,” Nature (London) 393, 49–52 (1998).\nH. W. C. Postma, T. Teepen, Z. Yao, M. Grifoni, and C. Dekker, “Carbon Nanotube Single-Electron Transistors at Room Temperature,” Science (Washington) 293, 76–79 (2001).\nY. Huang, X. Duan, Y. Cui, J. Lauhon, K. H. Kim, and C. M. Lieber, “Logic Gates and Computation from Assembled Nanowire Building Blocks,” Science (Washington) 294, 1313–1317 (2001).\nA. Bachtold, P. Hadley, T. Nakanishi, and C. Dekker, “Logic Circuits with Carbon Nanotube Transistors,” Science (Washington) 294, 1317–1320 (2001).\nX. Duan, Y. Huang, R. Agarwal, and C. M. Lieber, “Single-Nanowire Electrically Driven Lasers,” Nature (London) 421, 241–245 (2003).\nJ. D. Joannopoulos, R. D. Mead, and J. D. Winn, Photonic Crystals: Molding of Flow of Light (Princeton University Press, Princeton, New Jersey, United States, 1995).\nY. Kanamori, K. Hane, H. Sai, and H. Yugami, “100-nm Period Silicon Antireflection Structures Fabricated Using a Porous Alumina Membrane Mask,” Appl. Phys. Lett. 78(2), 142–143 (2001).\nD. Crouse, Y.-H. Lo, A. E. Miller, and M. Crouse, “Self-Ordered Pore Structure of Anodized Aluminum on Silicon and Pattern Transfer,” Appl. Phys. Lett. 76(1), 49–51 (2000).\nA. N. Belov, “Local Etching of Silicon Using a Solid Mask from Porous Aluminum Oxide,” Semiconductors 42(13), 1519–1521 (2008).\nA. N. Belov, Yu. A. Demidov, M. G. Putrya, A. A. Golishnikov, and A. A. Vasilyev, “Silicon Nanoprofiling with the Use of a Solid Aluminum Oxide Mask and Combined’ Dry’ Etching,” Semiconductors 43(13), 1660–1662 (2009).\nL. Young, Anodic Oxide Films (Academic, New York, 1961; Energiya, Leningrad, 1967).",{"VOID":1107},"10.1134\u002FS199507801106005X","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1134\u002FS199507801106005X",[1110,1125,1138,1151],{"id":1111,"sortIndex":32,"researcher":28,"roles":1112,"affiliations":1113,"properties":1122,"displayName":1124,"givenName":28,"familyName":28},"c7309182-3190-4c90-95c0-146a3749dcff",[941],[1114],{"id":1115,"sortIndex":32,"affiliation":1116,"properties":28},"e1ec891c-2d67-4f67-93fa-b675f7edb438",{"id":1115,"createTime":28,"updateTime":28,"relativeEntities":1117,"slug":28,"properties":1118,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1121,"statistic":28},[],{"title":1119},{"VI":1120},"National Research University of Electronic Technology, Zelenograd, Moscow, Russia",[],{"title":1123},{"VI":1124},"A. N. Belov",{"id":1126,"sortIndex":40,"researcher":28,"roles":1127,"affiliations":1128,"properties":1135,"displayName":1137,"givenName":28,"familyName":28},"c357383f-63ca-483d-9958-4dec6e5332f5",[941],[1129],{"id":1115,"sortIndex":32,"affiliation":1130,"properties":28},{"id":1115,"createTime":28,"updateTime":28,"relativeEntities":1131,"slug":28,"properties":1132,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1134,"statistic":28},[],{"title":1133},{"VI":1120},[],{"title":1136},{"VI":1137},"S. A. Gavrilov",{"id":1139,"sortIndex":123,"researcher":28,"roles":1140,"affiliations":1141,"properties":1148,"displayName":1150,"givenName":28,"familyName":28},"bce43d9d-4815-4683-b84b-211d79666392",[941],[1142],{"id":1115,"sortIndex":32,"affiliation":1143,"properties":28},{"id":1115,"createTime":28,"updateTime":28,"relativeEntities":1144,"slug":28,"properties":1145,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1147,"statistic":28},[],{"title":1146},{"VI":1120},[],{"title":1149},{"VI":1150},"Yu. A. Demidov",{"id":1152,"sortIndex":42,"researcher":28,"roles":1153,"affiliations":1154,"properties":1161,"displayName":1163,"givenName":28,"familyName":28},"b2a6c404-132a-4e37-a050-c186037a6968",[941],[1155],{"id":1115,"sortIndex":32,"affiliation":1156,"properties":28},{"id":1115,"createTime":28,"updateTime":28,"relativeEntities":1157,"slug":28,"properties":1158,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1160,"statistic":28},[],{"title":1159},{"VI":1120},[],{"title":1162},{"VI":1163},"V. I. Shevyakov",{"url":1108,"publisher":1165,"properties":1185},{"id":868,"createTime":869,"updateTime":870,"relativeEntities":1166,"slug":872,"properties":1167,"entityType":25,"verifyStatus":880,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":32,"subjectFields":1171,"manageAffiliations":1172,"indexDatabases":1173,"url":28,"thumbnailPath":28,"statistic":1180,"gsStatistic":28,"type":28,"analyzePriority":28},[],{"issn":1168,"title":1169,"eissn":1170},{"VOID":875},{"EN":877},{"VOID":879},[],[],[1174],{"id":885,"indexDatabase":1175,"url":891,"indexYears":892,"academicFieldIds":28,"indexDatabaseRanking":893},{"id":775,"createTime":28,"updateTime":28,"relativeEntities":1176,"label":1177,"description":1178,"key":781,"publicationTags":1179,"standard":28},[],{"EN":778,"VI":778},{"EN":778,"VI":780},[783],{"impactFactor":32,"impactFactorByYear":1181,"i10Index":142,"i10IndexLast5Year":123,"totalPublication":899,"totalPublicationByYear":1182,"totalCitation":901,"totalCitationByYear":1183,"totalCitationPerPublication":903,"totalCitationPerPublicationByYear":1184,"hindexLast5Year":199,"hindex":199},{"2012":424,"2013":840,"2014":284,"2015":698,"2016":896,"2017":897,"2018":898,"2019":367,"2020":286,"2021":821,"2022":123},{"2008":145,"2009":357,"2010":323,"2011":145,"2012":205,"2013":135,"2014":126,"2015":145,"2016":51,"2017":357,"2018":129,"2019":48,"2020":49},{"2008":574,"2009":329,"2010":607,"2011":151,"2012":565,"2013":578,"2014":156,"2015":139,"2016":688,"2017":152,"2018":158,"2019":134,"2020":281},{"2008":905,"2009":906,"2010":907,"2011":908,"2012":145,"2013":909,"2014":48,"2015":910,"2016":45,"2017":911,"2018":912,"2019":913,"2020":914},{"pages":1186,"volume":1188},{"VOID":1187},"711-716",{"VOID":1088},"2011-12-23",[893],{"id":1192,"createTime":1193,"updateTime":1194,"relativeEntities":1195,"slug":1196,"properties":1197,"entityType":934,"verifyStatus":26,"verifyTime":1194,"verifyNote":935,"languages":28,"translateLanguages":28,"viewCount":32,"primaryUrl":1206,"fullTextUrl":28,"authors":1207,"publicationType":1062,"publisherRelationship":1249,"citationCount":28,"citationInfo":28,"publishDate":1275,"publishYear":1276,"citationAnalyzeStatus":880,"lastCitationAnalyze":28,"indexDatabases":1277,"openAccess":28,"references":28,"isForceReanalyzing":1092},"0096622c-af26-43fd-b23d-492ca1cfa497","2024-02-10T16:20:25.803+00:00","2025-02-21T20:17:51.381+00:00",[],"On-the-effect-of-size-shape-and-internal-structure-on-phase-equilibrium-in-graphite-and-diamond-nanocrystallites",{"abstract":1198,"title":1200,"references":1202,"doi":1204},{"EN":1199},"The properties of nanodispersive carbon are different from those in its typical bulk-crystalline state. For nanographite and nanodiamond, the change in thermodynamic potentials caused by the nanodispersive state depends on the size, shape and arrangement of carbon atoms in a nanoparticle. In this work we developed a technique allowing us to estimate the enthalpy of formation and entropy in nanographite and nanodiamond as functions of size, shape, and internal structure of nanocrystals. The relevant nanographite-nanodiamond phase diagrams have been calculated.",{"EN":1201},"On the effect of size, shape, and internal structure on phase equilibrium in graphite and diamond nanocrystallites",{"VOID":1203},"A. L. Vereshchagin, Detonation Nanodiamonds, Morphology (Polzunov Altai State Techn. Univ., Biisk, 2001), p. 177 [in Russian].\nN. D. Orekhov and V. V. Stegailov, “Moleculardynamical simulation of graphite melting,” Teplofiz. Vys. Temp. 52(2), 220 (2014).\nF. P. Bundy, “The P,T phase and reaction diagram for elemental carbon,” Geophys. Res. 85(12), 6930 (1980).\nM. Togaya, S. Sugiyama, and E. Mizurhara, Melting Line of Graphite. High Pressure Science and Technology Ed. by S. C. Schmetd, J. W. Chaner, and M. Ross (Am. Inst. Phys., 1993), pp. 255–258.\nA. Yu. Basharin, I. G. Lippgardt, and M. Yu. Marin, “Boiling and melting of quasi-monocrystalline graphite,” Trudy Inst. Teplofiz. Ekstrem. Sost. Ob”ed. Inst. Vys. Temp. 3, 79 (2000).\nV. N. Korobenko, A. I. Savvatimski, and R. Cheret, “Graphite melting and properties of liquid carbon,” Int. J. Thermophys. 20(4), 1247–1256 (1999).\nL. F. Vereshchagin and N. S. Fateeva, “Melting temperatures of refractory metals at high pressures,” High Temp. — High Press. 9(6), 619–628 (1977).\nM. van Thiel and F. H. Ree “Thermodynamic properties and phase diagram of the graphite-diamond-liquid carbon system,” High Pressure Res. 10, 607 (1992).\nS. A. Gubin, V. V. Odintsov, V. I. Pepekin, and S. S. Sergeev, “Effect of graphite’s and diamond’s crystals shape and size onto carbon phase equilibrium and detonation parameters,” Preprint of Branch of Institute of Physical Chemisrty Russ. Acad. Sci. (1989), p. 46.\nN. W. Winter and F. H. Ree, “Stability of the graphite and diamond phases of finite carbon clusters,” in Proc. Detonation Symp. (Snowmass, CO, Aug. 30–Sept. 4, 1998).\nI. V. Derbenev, N. E. Chizhikova, and V. V. Dremov, “Molecular-dynamical simulation of nanoclusters properties under conditions near PV of condensed VV,” in Shock Waves in Condensed Mediums (2011), pp. 26–29.\nG. Chevrot, E. Bourasseal, N. Pineau, and J.-B. Maillet, “Molecular dynamics simulation of nanocarbons at high pressure and temperature,” Carbon 47, 3392–3402 (2009).\nE. A. Valdes, P. De La Mora, M. Castro, and J. Keller, “Theoretical calculation of carbon clusters,” Int. J. Quant. Chem. 65, 867–875 (1997).\nC. C. Yang and S. Li, “Size-dependent temperature-pressure phase diagram of carbon,” Phys. Chem. C 112, 1423–1426 (2008).\nE. Andersson Odd, B. L. V. Prasad, H. Sato, and T. Enoki, “Structure and electronic properties of graphite nanoparticles,” Phys. Rev. 58(24) (1998).\nT. Enoki, B. L. V. Prasad, K. Takai, and H. Sato, “Structure and electronic properties of sp2\u002Fsp3 mixed nano-carbon systems,” Mol. Cryst. Liq. Cryst. 386, 145–149 (2010).\nJ. Qian, C. Pantea, J. Huang, T. W. Zerda, and Y. Zhao, “Graphitization of diamond powders of different sizesat high pressure-high temperature,” Carbon 42, 2691–2697 (2004).\nV. M. Titov, V. F. Anisichkin, and I. Yu. Mal’kov, “Ultrafine diamond synthesis in detonation wave,” Fiz. Goren. Vzryva 25(3), 117–126 (1989).\nV. A. Davydov, A. V. Rakhmanina, S. Rols, V. Agafonov, M. X. Pulikkathara, R. L. Vander Wal, and V. N. Khabashesku, “Size-dependent phase transition of diamond to graphite at high pressures,” Phys. Chem. C 111, 12918–12925 (2007).\nA. M. Molodets, “Generalized Gruneisen function for condensed mediums,” Fiz. Goren. Vzryva 31(5), 132–133 (1995).\nS. B. Viktorov, S. A. Gubin, I. V. Maklashova, and V. I. Pepekin, “The way to predict detonation characteristics for hydrogen free explosives,” Khim. Fiz. 24(12), 22–45 (2005).\nJ. W. Gibbs, Elementary Principles in Statistical Mechanics. The Rational Foundation of Thermodynamics (Edward Arnold, London, 1902).\nPhysical Quantities. Handbook, Ed. by I. S. Grigor’ev and E. Z. Meilikhov (Energoatomizdat, Moscow, 1991) [in Russian].",{"VOID":1205},"10.1134\u002FS1995078015010073","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1134\u002FS1995078015010073",[1208,1223,1236],{"id":1209,"sortIndex":32,"researcher":28,"roles":1210,"affiliations":1211,"properties":1220,"displayName":1222,"givenName":28,"familyName":28},"26070a57-eb3c-4e67-a72f-4fc8b7d2381d",[941],[1212],{"id":1213,"sortIndex":32,"affiliation":1214,"properties":28},"14b9b421-9f58-4a53-b60d-02249cc7c74b",{"id":1213,"createTime":28,"updateTime":28,"relativeEntities":1215,"slug":28,"properties":1216,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1219,"statistic":28},[],{"title":1217},{"VI":1218},"National Research Nuclear University, Moscow, Russia",[],{"title":1221},{"VI":1222},"S. A. Gubin",{"id":1224,"sortIndex":40,"researcher":28,"roles":1225,"affiliations":1226,"properties":1233,"displayName":1235,"givenName":28,"familyName":28},"d6c9140e-4ecf-428a-bf10-72508356a296",[941],[1227],{"id":1213,"sortIndex":32,"affiliation":1228,"properties":28},{"id":1213,"createTime":28,"updateTime":28,"relativeEntities":1229,"slug":28,"properties":1230,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1232,"statistic":28},[],{"title":1231},{"VI":1218},[],{"title":1234},{"VI":1235},"I. V. Maklashova",{"id":1237,"sortIndex":123,"researcher":28,"roles":1238,"affiliations":1239,"properties":1246,"displayName":1248,"givenName":28,"familyName":28},"0184fa17-c577-4f47-93ac-0da21ce62ba7",[941],[1240],{"id":1213,"sortIndex":32,"affiliation":1241,"properties":28},{"id":1213,"createTime":28,"updateTime":28,"relativeEntities":1242,"slug":28,"properties":1243,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1245,"statistic":28},[],{"title":1244},{"VI":1218},[],{"title":1247},{"VI":1248},"E. I. Dzhelilova",{"url":1206,"publisher":1250,"properties":1270},{"id":868,"createTime":869,"updateTime":870,"relativeEntities":1251,"slug":872,"properties":1252,"entityType":25,"verifyStatus":880,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":32,"subjectFields":1256,"manageAffiliations":1257,"indexDatabases":1258,"url":28,"thumbnailPath":28,"statistic":1265,"gsStatistic":28,"type":28,"analyzePriority":28},[],{"issn":1253,"title":1254,"eissn":1255},{"VOID":875},{"EN":877},{"VOID":879},[],[],[1259],{"id":885,"indexDatabase":1260,"url":891,"indexYears":892,"academicFieldIds":28,"indexDatabaseRanking":893},{"id":775,"createTime":28,"updateTime":28,"relativeEntities":1261,"label":1262,"description":1263,"key":781,"publicationTags":1264,"standard":28},[],{"EN":778,"VI":778},{"EN":778,"VI":780},[783],{"impactFactor":32,"impactFactorByYear":1266,"i10Index":142,"i10IndexLast5Year":123,"totalPublication":899,"totalPublicationByYear":1267,"totalCitation":901,"totalCitationByYear":1268,"totalCitationPerPublication":903,"totalCitationPerPublicationByYear":1269,"hindexLast5Year":199,"hindex":199},{"2012":424,"2013":840,"2014":284,"2015":698,"2016":896,"2017":897,"2018":898,"2019":367,"2020":286,"2021":821,"2022":123},{"2008":145,"2009":357,"2010":323,"2011":145,"2012":205,"2013":135,"2014":126,"2015":145,"2016":51,"2017":357,"2018":129,"2019":48,"2020":49},{"2008":574,"2009":329,"2010":607,"2011":151,"2012":565,"2013":578,"2014":156,"2015":139,"2016":688,"2017":152,"2018":158,"2019":134,"2020":281},{"2008":905,"2009":906,"2010":907,"2011":908,"2012":145,"2013":909,"2014":48,"2015":910,"2016":45,"2017":911,"2018":912,"2019":913,"2020":914},{"pages":1271,"volume":1273},{"VOID":1272},"18-24",{"VOID":1274},"10","2015-02-28",2015,[893],{"id":1279,"createTime":1280,"updateTime":1280,"relativeEntities":1281,"slug":28,"properties":1282,"entityType":934,"verifyStatus":880,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":32,"primaryUrl":1291,"fullTextUrl":28,"authors":1292,"publicationType":1062,"publisherRelationship":1362,"citationCount":28,"citationInfo":28,"publishDate":1388,"publishYear":1389,"citationAnalyzeStatus":880,"lastCitationAnalyze":28,"indexDatabases":1390,"openAccess":28,"references":28,"isForceReanalyzing":1092},"026e6691-5a67-469d-b63a-a7c335053e46","2024-02-12T17:01:04.352+00:00",[],{"abstract":1283,"title":1285,"references":1287,"doi":1289},{"EN":1284},"Nanosized SnO2 and CoFe2O4 oxide powders were obtained by mechanochemical synthesis from salt systems of appropriate reagents. Their physicochemical properties and absorption abilities were investigated with respect to microorganisms and organic impurities. The value of adhesion of Micrococcus albus and Pseudomonas putida bacterial cells amounted to 99.999–100% upon the filtration of microbial oil-contaminated suspension via columns filled with the nanosorbents under investigation. A well-developed specific surface area makes it possible to use nanosorbents to extensively rid drinking water of microorganisms and organic contaminants, which is of great importance for decreasing infectious human morbidity.",{"EN":1286},"Nanosized SnO2 and CoFe2O4 composite materials: Their preparation, properties and sorption activity",{"VOID":1288},"E. P. Naiden, V. A. Zhuravlev, V. I. Itin, O. G. Terekhova, A. A. Magaeva, Yu. F. Ivanov, L. V. Zagrebin, and S. S. Shestov, “Structure and Magnetic Properties of Nanosized Cobalt Ferrite Powders Prepared by the Method of Mechanochemical Synthesis from Salt Systems,” Khim. Interesakh Ustoich. Razvit. 15, 143–147 (2007).\nE. P. Naiden, V. A. Zhuravlev, V. I. Itin, O. G. Terekhova, A. A. Magaeva, and Yu. F. Ivanov, “Magnetic Properties and Structural Parameters of Nanosized Oxide Ferrimagnet Powders Produced by Mechanochemical Synthesis from Salt Solutions,” Fiz. Tverd. Tela (St. Petersburg) 50(5), 857–863 (2008) [Phys. Solid State 50 (5), 894–900 (2008)].\nRF Patent No. 2 319 153 (2008).\nV. G. Ivanov, M. N. Safronov, and O. V. Gavrilyuk, “Preparation and Surface Properties of Ultradispersed Aluminum Oxide-Hydroxide Phases,” Khim. Interesakh Ustoich. Razvit. 8(5), 705–710 (2000).\nL. I. Svarovskaya and V. S. Ovsyannikova, “Sorption of Microorganisms from Aqueous Solutions on the Surface of Ultradispersed Powders of Aluminum Oxyhydroxide,” in Proceedings of the All-Russian Scientific and Technical Conference “Ultradispersed Powders, Nanostructures, and Materials: Preparation, Properties, and Applications,” Krasnoyarsk, Russia, October 23–24, 2003, Ed. by V. E. Red’kin and S. A. Podlesnyi (Krasnoyarsk State Technical University, Krasnoyarsk, 2003), pp. 41–43 [in Russian].\nD. G. Zvyagintsev, Interaction of Microorganisms with Solid Surfaces (Moscow State University, Moscow, 1973) [in Russian].\nV. I. Romanenko and S. I. Kuznetsov, Ecology of the Microorganisms in Fresh-Water Reservoirs: A Laboratory Manual (Nauka, Leningrad, 1974), pp. 12–33 [in Russian].\nL. M. Cukrova, T. Tsuzukia, and P. G. McCormicka, “SnO2 Nanoparticles Prepared by Mechanochemical Processing,” Scr. Mater. 44, 1787–1790 (2001).",{"VOID":1290},"10.1134\u002FS1995078010110078","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1134\u002FS1995078010110078",[1293,1308,1323,1336,1349],{"id":1294,"sortIndex":32,"researcher":28,"roles":1295,"affiliations":1296,"properties":1305,"displayName":1307,"givenName":28,"familyName":28},"addf8fe6-8083-42f5-86c8-7a664fa66041",[941],[1297],{"id":1298,"sortIndex":32,"affiliation":1299,"properties":28},"dbbd162c-d3c5-4769-a8d3-82ecb47bd35e",{"id":1298,"createTime":28,"updateTime":28,"relativeEntities":1300,"slug":28,"properties":1301,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1304,"statistic":28},[],{"title":1302},{"VI":1303},"Institute of Petroleum Chemistry, Siberian Division, Russian Academy of Sciences, Tomsk, Russia",[],{"title":1306},{"VI":1307},"L. I. Svarovskaya",{"id":1309,"sortIndex":40,"researcher":28,"roles":1310,"affiliations":1311,"properties":1320,"displayName":1322,"givenName":28,"familyName":28},"306d7627-a1c4-43f4-96b9-29d6ae9e1984",[941],[1312],{"id":1313,"sortIndex":32,"affiliation":1314,"properties":28},"aafe6e80-09bd-42a6-a395-54715859fb2b",{"id":1313,"createTime":28,"updateTime":28,"relativeEntities":1315,"slug":28,"properties":1316,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1319,"statistic":28},[],{"title":1317},{"VI":1318},"Tomsk Scientific Center, Department for Structural Macrokinetics, Siberian Division, Russian Academy of Sciences, Tomsk, Russia",[],{"title":1321},{"VI":1322},"O. G. Terekhova",{"id":1324,"sortIndex":123,"researcher":28,"roles":1325,"affiliations":1326,"properties":1333,"displayName":1335,"givenName":28,"familyName":28},"6a3f188b-e6e6-4fb0-83e0-9c2440f02ec0",[941],[1327],{"id":1313,"sortIndex":32,"affiliation":1328,"properties":28},{"id":1313,"createTime":28,"updateTime":28,"relativeEntities":1329,"slug":28,"properties":1330,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1332,"statistic":28},[],{"title":1331},{"VI":1318},[],{"title":1334},{"VI":1335},"V. I. Itin",{"id":1337,"sortIndex":42,"researcher":28,"roles":1338,"affiliations":1339,"properties":1346,"displayName":1348,"givenName":28,"familyName":28},"b174181f-b4bb-428f-8ce0-b319235543e4",[941],[1340],{"id":1313,"sortIndex":32,"affiliation":1341,"properties":28},{"id":1313,"createTime":28,"updateTime":28,"relativeEntities":1342,"slug":28,"properties":1343,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1345,"statistic":28},[],{"title":1344},{"VI":1318},[],{"title":1347},{"VI":1348},"A. A. Magaeva",{"id":1350,"sortIndex":45,"researcher":28,"roles":1351,"affiliations":1352,"properties":1359,"displayName":1361,"givenName":28,"familyName":28},"b5ef9c5b-c208-4cc6-b44b-25347dde1e3d",[941],[1353],{"id":1313,"sortIndex":32,"affiliation":1354,"properties":28},{"id":1313,"createTime":28,"updateTime":28,"relativeEntities":1355,"slug":28,"properties":1356,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1358,"statistic":28},[],{"title":1357},{"VI":1318},[],{"title":1360},{"VI":1361},"E. P. Naiden",{"url":1291,"publisher":1363,"properties":1383},{"id":868,"createTime":869,"updateTime":870,"relativeEntities":1364,"slug":872,"properties":1365,"entityType":25,"verifyStatus":880,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":32,"subjectFields":1369,"manageAffiliations":1370,"indexDatabases":1371,"url":28,"thumbnailPath":28,"statistic":1378,"gsStatistic":28,"type":28,"analyzePriority":28},[],{"issn":1366,"title":1367,"eissn":1368},{"VOID":875},{"EN":877},{"VOID":879},[],[],[1372],{"id":885,"indexDatabase":1373,"url":891,"indexYears":892,"academicFieldIds":28,"indexDatabaseRanking":893},{"id":775,"createTime":28,"updateTime":28,"relativeEntities":1374,"label":1375,"description":1376,"key":781,"publicationTags":1377,"standard":28},[],{"EN":778,"VI":778},{"EN":778,"VI":780},[783],{"impactFactor":32,"impactFactorByYear":1379,"i10Index":142,"i10IndexLast5Year":123,"totalPublication":899,"totalPublicationByYear":1380,"totalCitation":901,"totalCitationByYear":1381,"totalCitationPerPublication":903,"totalCitationPerPublicationByYear":1382,"hindexLast5Year":199,"hindex":199},{"2012":424,"2013":840,"2014":284,"2015":698,"2016":896,"2017":897,"2018":898,"2019":367,"2020":286,"2021":821,"2022":123},{"2008":145,"2009":357,"2010":323,"2011":145,"2012":205,"2013":135,"2014":126,"2015":145,"2016":51,"2017":357,"2018":129,"2019":48,"2020":49},{"2008":574,"2009":329,"2010":607,"2011":151,"2012":565,"2013":578,"2014":156,"2015":139,"2016":688,"2017":152,"2018":158,"2019":134,"2020":281},{"2008":905,"2009":906,"2010":907,"2011":908,"2012":145,"2013":909,"2014":48,"2015":910,"2016":45,"2017":911,"2018":912,"2019":913,"2020":914},{"pages":1384,"volume":1386},{"VOID":1385},"795-799",{"VOID":1387},"5","2010-12-24",2010,[893],{"id":1392,"createTime":1393,"updateTime":1394,"relativeEntities":1395,"slug":1396,"properties":1397,"entityType":934,"verifyStatus":26,"verifyTime":1394,"verifyNote":935,"languages":28,"translateLanguages":28,"viewCount":32,"primaryUrl":1406,"fullTextUrl":28,"authors":1407,"publicationType":1062,"publisherRelationship":1475,"citationCount":28,"citationInfo":28,"publishDate":1500,"publishYear":1276,"citationAnalyzeStatus":880,"lastCitationAnalyze":28,"indexDatabases":1501,"openAccess":28,"references":28,"isForceReanalyzing":1092},"029f171b-d0cf-41d1-aaff-3a293765258a","2024-01-26T15:10:48.094+00:00","2025-02-09T21:53:33.666+00:00",[],"Simulating-the-nucleation-and-growth-of-Ge-quantum-dots-on-Si-using-high-efficiency-algorithms",{"abstract":1398,"title":1400,"references":1402,"doi":1404},{"EN":1399},"Original approaches are presented for elucidating a microscopic mechanism of surface atomic diffusion and simulating the heteroepitaxial nanostructure growth on substrates with a complex relief. Using the molecular dynamics method, the energy surface of a pit-patterned Si substrate is mapped out and the conditions for the nucleation of more than one Ge island in a pit are established. A Monte Carlo model is developed that reproduces the Ge growth on Si with regard to elastic effects in a heterosystem. By the example of this Monte Carlo model, it is demonstrated how to reduce the calculation time by optimizing the description of the crystal lattice state in computer cache memory and by using parallel algorithms for working on a computer cluster.",{"EN":1401},"Simulating the nucleation and growth of Ge quantum dots on Si using high-efficiency algorithms",{"VOID":1403},"G. Bauer and P. Schäffler, “Self-assembled Si and SiGe nanostructures: new growth concepts and structural analysis,” Phys. Status Solidi 203 (14), 3496 (2006).\nV. Pascale, I. Berbezier, A. Ronda, et al., “Self-assembly and ordering mechanisms of Ge Islands on prepatterned Si(001),” Phys. Rev. B 77 (7), 075311 (2008).\nC. Dais, H. H. Solak, Ya. Ekinci, et al., “Ge quantum dot molecules and crystals: preparation and properties,” Surf. Sci. 601 (13), 2787 (2007).\nZh. Smagina, P. Novikov, V. Zinovyev, N. Stepina, A. Dvurechenskii, Vl. Armbrister, V. Seleznev, and P. Kuchinskaya, “Nucleation and epitaxial growth of Ge nanoislands on Si surface prepatterned by ion irradiation,” Phys. Status Solidi A 210 (8), 1522 (2013).\nJ. Tersoff, “New empirical approach for the structure and energy of covalent systems,” Phys. Rev. B 37 (12), 6991 (1988).\nP. Novikov, J. Smagina, D. Vlasov, A. Deryabin, A. Kozhukhov, and A. Dvurechenskii, “Space arrangement of Ge nanoislands formed by growth of Ge on pitpatterned Si substrates,” J. Cryst. Growth 323 (1), 198 (2011).\nV. G. Dubrovskii, The Theory of Epitaxial Nanostructures Formation (Fizmatlit, Moscow, 2009) [in Russian].\nA. Baskaran, J. Devita, and P. 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Smereka, “Kinetic Monte Carlo simulation of heteroepitaxial growth: wetting layers, quantum dots, capping, and nanorings,” Phys. Rev. B 86 (23), 235313 (2012).\nA. V. Nenashev, Zh. V. Smagina, S. A. Rudin, and A. V. Dvurechenskii, “Epitaxial growth of Ge\u002FSi nanostructures under ion radiation,” in Proc. 17th Int. Symp. “Nanophysics and Nanoelectronics” (Oktyabr’skii Village, Nizhni Novgorod Region, 2013), Vol. 2, p. 538.\nD. D. Vvedensky and S. Clarke, “Recovery kinetics during interrupted epitaxial growth,” Surf. Sci. 255, 373 (1990).\nG. V. Hansson and M. I. Larson, “Initial staged of Si molecular beam epitaxy on Si(100) studied with reflection high-energy electron-diffraction intensity measurements and Monte Carlo simulation,” Surf. Sci. 321, 1255 (1994).\nP. N. Keating, “Effect of invariance requirements on the elastic strain energy of crystals with application to the diamond structure,” Phys. Rev. 145 (2), 637 (1966).\nA. I. Yakimov, A. V. Dvurechenskii, and A. I. Nikiforov, “Germanium self-assembled quantum dots in silicon for nano- and optoelectronics,” J. Nanoelectron. Optoelectron. 1, 119 (2006).\nV. M. Kaganer and K. H. Ploog, “Energies of strained vicinal surfaces and strained islands,” Phys. Rev. B 64 (20), 205301 (2001).\nJ. Tersoff, C. Teichert, and M. G. Lagally, “Self-organization in growth of quantum dot superlattices,” Phys. Rev. Lett. 76 (10), 1675 (1996).\nThanh Vinn Le, V. Yam, P. Boucaud, et al., “Vertically self-organized Ge\u002FSi(001) quantum dots in multilayer structures,” Phys. Rev. B 60 (8), 5851 (1999).\nA. Fogg, The microarchitecture of Intel, AMD and VIA CPUs. An optimization guide for assembly programmers and compiler makers. www.agner.org\u002Foptimize\u002Fmicroarchitecture.pdf\nU. Drepper. What Every Programmer Should Know about Memory (2007). http:\u002F\u002Fwww.akkadia.org\u002Fdrepper\u002Fcpumemory.pdf\nJ. C. Wagner, “Hybrid and parallel domain-decomposition methods development to enable Monte Carlo for reactor analyses,” Progr. Nucl. Sci. Technol. 2, 815 (2011).",{"VOID":1405},"10.1134\u002FS1995078015020147","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1134\u002FS1995078015020147",[1408,1423,1436,1449,1462],{"id":1409,"sortIndex":32,"researcher":28,"roles":1410,"affiliations":1411,"properties":1420,"displayName":1422,"givenName":28,"familyName":28},"98a36c7c-e8d5-456c-a1bd-d88fbaf0311d",[941],[1412],{"id":1413,"sortIndex":32,"affiliation":1414,"properties":28},"5d62e3f5-5e3b-45c9-a5e5-f2d2c8f574c7",{"id":1413,"createTime":28,"updateTime":28,"relativeEntities":1415,"slug":28,"properties":1416,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1419,"statistic":28},[],{"title":1417},{"VI":1418},"Rzhanov Institute of Semiconductor Physics, Russian Academy of Sciences, Siberian Branch, Novosibirsk, Russia",[],{"title":1421},{"VI":1422},"P. L. Novikov",{"id":1424,"sortIndex":40,"researcher":28,"roles":1425,"affiliations":1426,"properties":1433,"displayName":1435,"givenName":28,"familyName":28},"ee81b115-21e6-4ccb-b6b8-6d87d7ccf676",[941],[1427],{"id":1413,"sortIndex":32,"affiliation":1428,"properties":28},{"id":1413,"createTime":28,"updateTime":28,"relativeEntities":1429,"slug":28,"properties":1430,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1432,"statistic":28},[],{"title":1431},{"VI":1418},[],{"title":1434},{"VI":1435},"A. V. Nenashev",{"id":1437,"sortIndex":123,"researcher":28,"roles":1438,"affiliations":1439,"properties":1446,"displayName":1448,"givenName":28,"familyName":28},"b0090b4b-89eb-4c73-844a-a1ef2f60930f",[941],[1440],{"id":1413,"sortIndex":32,"affiliation":1441,"properties":28},{"id":1413,"createTime":28,"updateTime":28,"relativeEntities":1442,"slug":28,"properties":1443,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1445,"statistic":28},[],{"title":1444},{"VI":1418},[],{"title":1447},{"VI":1448},"S. A. Rudin",{"id":1450,"sortIndex":42,"researcher":28,"roles":1451,"affiliations":1452,"properties":1459,"displayName":1461,"givenName":28,"familyName":28},"3d47952c-fc15-4735-861a-3e034cec6465",[941],[1453],{"id":1413,"sortIndex":32,"affiliation":1454,"properties":28},{"id":1413,"createTime":28,"updateTime":28,"relativeEntities":1455,"slug":28,"properties":1456,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1458,"statistic":28},[],{"title":1457},{"VI":1418},[],{"title":1460},{"VI":1461},"A. S. Polyakov",{"id":1463,"sortIndex":45,"researcher":28,"roles":1464,"affiliations":1465,"properties":1472,"displayName":1474,"givenName":28,"familyName":28},"6481eaba-04ff-4cff-afd3-382fbf539ccd",[941],[1466],{"id":1413,"sortIndex":32,"affiliation":1467,"properties":28},{"id":1413,"createTime":28,"updateTime":28,"relativeEntities":1468,"slug":28,"properties":1469,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1471,"statistic":28},[],{"title":1470},{"VI":1418},[],{"title":1473},{"VI":1474},"A. V. Dvurechenskii",{"url":1406,"publisher":1476,"properties":1496},{"id":868,"createTime":869,"updateTime":870,"relativeEntities":1477,"slug":872,"properties":1478,"entityType":25,"verifyStatus":880,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":32,"subjectFields":1482,"manageAffiliations":1483,"indexDatabases":1484,"url":28,"thumbnailPath":28,"statistic":1491,"gsStatistic":28,"type":28,"analyzePriority":28},[],{"issn":1479,"title":1480,"eissn":1481},{"VOID":875},{"EN":877},{"VOID":879},[],[],[1485],{"id":885,"indexDatabase":1486,"url":891,"indexYears":892,"academicFieldIds":28,"indexDatabaseRanking":893},{"id":775,"createTime":28,"updateTime":28,"relativeEntities":1487,"label":1488,"description":1489,"key":781,"publicationTags":1490,"standard":28},[],{"EN":778,"VI":778},{"EN":778,"VI":780},[783],{"impactFactor":32,"impactFactorByYear":1492,"i10Index":142,"i10IndexLast5Year":123,"totalPublication":899,"totalPublicationByYear":1493,"totalCitation":901,"totalCitationByYear":1494,"totalCitationPerPublication":903,"totalCitationPerPublicationByYear":1495,"hindexLast5Year":199,"hindex":199},{"2012":424,"2013":840,"2014":284,"2015":698,"2016":896,"2017":897,"2018":898,"2019":367,"2020":286,"2021":821,"2022":123},{"2008":145,"2009":357,"2010":323,"2011":145,"2012":205,"2013":135,"2014":126,"2015":145,"2016":51,"2017":357,"2018":129,"2019":48,"2020":49},{"2008":574,"2009":329,"2010":607,"2011":151,"2012":565,"2013":578,"2014":156,"2015":139,"2016":688,"2017":152,"2018":158,"2019":134,"2020":281},{"2008":905,"2009":906,"2010":907,"2011":908,"2012":145,"2013":909,"2014":48,"2015":910,"2016":45,"2017":911,"2018":912,"2019":913,"2020":914},{"pages":1497,"volume":1499},{"VOID":1498},"192-204",{"VOID":1274},"2015-05-03",[893],{"id":1503,"createTime":1504,"updateTime":1505,"relativeEntities":1506,"slug":1507,"properties":1508,"entityType":934,"verifyStatus":26,"verifyTime":1505,"verifyNote":935,"languages":28,"translateLanguages":28,"viewCount":32,"primaryUrl":1517,"fullTextUrl":28,"authors":1518,"publicationType":1062,"publisherRelationship":1629,"citationCount":28,"citationInfo":28,"publishDate":1655,"publishYear":1656,"citationAnalyzeStatus":880,"lastCitationAnalyze":28,"indexDatabases":1657,"openAccess":28,"references":28,"isForceReanalyzing":1092},"02d8ac49-1bb6-4c5d-9f14-9e4ba852a6f4","2024-01-14T17:26:55.115+00:00","2025-01-20T19:49:20.768+00:00",[],"Determining-the-Structure-and-Location-of-the-ATP-Synthase-in-the-Membranes-of-Rat-s-Heart-Mitochondria-Using-Cryoelectron-Tomography",{"abstract":1509,"title":1511,"references":1513,"doi":1515},{"EN":1510},"The structure of the ATP synthase of rat’s heart mitochondria is determined by cryoelectron tomography (cryo-ET). The experiments are carried out on fragments of mitochondrial membranes without the additional purification of samples, which allows us to study the mitochondrial enzymes in the natural phospholipid and protein environment. The use of subtomographic averaging yields the structure of the ATP synthase with a resolution of about 13 Å, as well as the structure of a stable dimer of ATP synthases with a resolution of about 15 Å. The classification of the obtained subtomograms containing ATP synthases showed that this enzyme is always located on the bends of the phospholipid bilayer, while there are two groups of ATP synthase dimers that differ in the membrane curvature in the regions of their localization. On the obtained three-dimensional structures, both extramembrane and intramembrane synthase subunits are quite clearly distinguishable, which indicates the prospects of the chosen methodological approach for studying polyenzyme systems in the natural environment.",{"EN":1512},"Determining the Structure and Location of the ATP Synthase in the Membranes of Rat’s Heart Mitochondria Using Cryoelectron Tomography",{"VOID":1514},"L. S. Yaguzhinsky, L. I. Boguslavsky, A. G. Volkov, and A. B. Rakhmaninova, Nature (London, U.K.) 259, 494 (1976). https:\u002F\u002Fdoi.org\u002F10.1038\u002F259494a0\nS. A. Eremeev and L. S. Yaguzhinsky, Biochemistry (Moscow) 80, 576 (2015). https:\u002F\u002Fdoi.org\u002F10.1134\u002FS0006297915050089\nK. Kinosita, R. Yasuda, H. Noji, and K. Adachi, Philos. Trans. R. Soc. B 355, 473 (2000). https:\u002F\u002Fdoi.org\u002F10.1098\u002Frstb.2000.0589\nP. D. Boyer, Biochim. Biophys. 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Khacho, et al., EMBO J. 33, 2676 (2014). https:\u002F\u002Fdoi.org\u002F10.15252\u002Fembj.201488349",{"VOID":1516},"10.1134\u002FS1995078020010139","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1134\u002FS1995078020010139",[1519,1543,1567,1587,1616],{"id":1520,"sortIndex":32,"researcher":28,"roles":1521,"affiliations":1522,"properties":1540,"displayName":1542,"givenName":28,"familyName":28},"bfc43ec5-70cf-4af0-b7e7-57e3708bed4b",[941],[1523,1531],{"id":1524,"sortIndex":32,"affiliation":1525,"properties":28},"e5322c34-45ec-4fdc-bc79-11725b8b1e4b",{"id":1524,"createTime":28,"updateTime":28,"relativeEntities":1526,"slug":28,"properties":1527,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1530,"statistic":28},[],{"title":1528},{"VI":1529},"Institute of cytochemistry and molecular pharmacology, Moscow, Russia",[],{"id":1532,"sortIndex":40,"affiliation":1533,"properties":1539},"3945f2e8-1e19-49f9-801c-42c07e448058",{"id":1532,"createTime":28,"updateTime":28,"relativeEntities":1534,"slug":28,"properties":1535,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1538,"statistic":28},[],{"title":1536},{"VI":1537},"Moscow Institute of Physics and Technology, Dolgoprudny, Russia",[],{},{"title":1541},{"VI":1542},"S. V. Nesterov",{"id":1544,"sortIndex":40,"researcher":28,"roles":1545,"affiliations":1546,"properties":1564,"displayName":1566,"givenName":28,"familyName":28},"ae809c0a-50ac-4079-ba70-3926900c5e7b",[941],[1547,1555],{"id":1548,"sortIndex":32,"affiliation":1549,"properties":28},"0b0ee483-3852-48bc-b3d4-ecfa4390b033",{"id":1548,"createTime":28,"updateTime":28,"relativeEntities":1550,"slug":28,"properties":1551,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1554,"statistic":28},[],{"title":1552},{"VI":1553},"National Research Center Kurchatov Institute, Moscow, Russia",[],{"id":1556,"sortIndex":40,"affiliation":1557,"properties":1563},"97c7c773-268a-4744-98ae-206e4e026360",{"id":1556,"createTime":28,"updateTime":28,"relativeEntities":1558,"slug":28,"properties":1559,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1562,"statistic":28},[],{"title":1560},{"VI":1561},"Federal Scientific Research Center “Crystallography and Photonics”, Russian Academy of Sciences, Moscow, Russia",[],{},{"title":1565},{"VI":1566},"Yu. M. Chesnokov",{"id":1568,"sortIndex":123,"researcher":28,"roles":1569,"affiliations":1570,"properties":1584,"displayName":1586,"givenName":28,"familyName":28},"7f961ace-2206-4bac-988f-792871d5032c",[941],[1571,1577],{"id":1548,"sortIndex":32,"affiliation":1572,"properties":28},{"id":1548,"createTime":28,"updateTime":28,"relativeEntities":1573,"slug":28,"properties":1574,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1576,"statistic":28},[],{"title":1575},{"VI":1553},[],{"id":1556,"sortIndex":40,"affiliation":1578,"properties":1583},{"id":1556,"createTime":28,"updateTime":28,"relativeEntities":1579,"slug":28,"properties":1580,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1582,"statistic":28},[],{"title":1581},{"VI":1561},[],{},{"title":1585},{"VI":1586},"R. A. Kamyshinsky",{"id":1588,"sortIndex":42,"researcher":28,"roles":1589,"affiliations":1590,"properties":1613,"displayName":1615,"givenName":28,"familyName":28},"9d88e0e4-9624-405e-a9a9-b26bfdfb1a14",[941],[1591,1597,1604],{"id":1524,"sortIndex":32,"affiliation":1592,"properties":28},{"id":1524,"createTime":28,"updateTime":28,"relativeEntities":1593,"slug":28,"properties":1594,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1596,"statistic":28},[],{"title":1595},{"VI":1529},[],{"id":1532,"sortIndex":40,"affiliation":1598,"properties":1603},{"id":1532,"createTime":28,"updateTime":28,"relativeEntities":1599,"slug":28,"properties":1600,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1602,"statistic":28},[],{"title":1601},{"VI":1537},[],{},{"id":1605,"sortIndex":123,"affiliation":1606,"properties":1612},"2ee3dea9-5fdb-4332-a0fa-13bbcb6c26ac",{"id":1605,"createTime":28,"updateTime":28,"relativeEntities":1607,"slug":28,"properties":1608,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1611,"statistic":28},[],{"title":1609},{"VI":1610},"Belozersky Research Institute for Physicochemical Biology, Moscow State University, Moscow, Russia",[],{},{"title":1614},{"VI":1615},"L. S. Yaguzhinsky",{"id":1617,"sortIndex":45,"researcher":28,"roles":1618,"affiliations":1619,"properties":1626,"displayName":1628,"givenName":28,"familyName":28},"e4584dc0-ac79-4d5f-8ab0-c24db3ff6a6e",[941],[1620],{"id":1548,"sortIndex":32,"affiliation":1621,"properties":28},{"id":1548,"createTime":28,"updateTime":28,"relativeEntities":1622,"slug":28,"properties":1623,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1625,"statistic":28},[],{"title":1624},{"VI":1553},[],{"title":1627},{"VI":1628},"R. G. Vasilov",{"url":1517,"publisher":1630,"properties":1650},{"id":868,"createTime":869,"updateTime":870,"relativeEntities":1631,"slug":872,"properties":1632,"entityType":25,"verifyStatus":880,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":32,"subjectFields":1636,"manageAffiliations":1637,"indexDatabases":1638,"url":28,"thumbnailPath":28,"statistic":1645,"gsStatistic":28,"type":28,"analyzePriority":28},[],{"issn":1633,"title":1634,"eissn":1635},{"VOID":875},{"EN":877},{"VOID":879},[],[],[1639],{"id":885,"indexDatabase":1640,"url":891,"indexYears":892,"academicFieldIds":28,"indexDatabaseRanking":893},{"id":775,"createTime":28,"updateTime":28,"relativeEntities":1641,"label":1642,"description":1643,"key":781,"publicationTags":1644,"standard":28},[],{"EN":778,"VI":778},{"EN":778,"VI":780},[783],{"impactFactor":32,"impactFactorByYear":1646,"i10Index":142,"i10IndexLast5Year":123,"totalPublication":899,"totalPublicationByYear":1647,"totalCitation":901,"totalCitationByYear":1648,"totalCitationPerPublication":903,"totalCitationPerPublicationByYear":1649,"hindexLast5Year":199,"hindex":199},{"2012":424,"2013":840,"2014":284,"2015":698,"2016":896,"2017":897,"2018":898,"2019":367,"2020":286,"2021":821,"2022":123},{"2008":145,"2009":357,"2010":323,"2011":145,"2012":205,"2013":135,"2014":126,"2015":145,"2016":51,"2017":357,"2018":129,"2019":48,"2020":49},{"2008":574,"2009":329,"2010":607,"2011":151,"2012":565,"2013":578,"2014":156,"2015":139,"2016":688,"2017":152,"2018":158,"2019":134,"2020":281},{"2008":905,"2009":906,"2010":907,"2011":908,"2012":145,"2013":909,"2014":48,"2015":910,"2016":45,"2017":911,"2018":912,"2019":913,"2020":914},{"pages":1651,"volume":1653},{"VOID":1652},"83-89",{"VOID":1654},"15","2020-12-01",2020,[893],{"id":1659,"createTime":1660,"updateTime":1661,"relativeEntities":1662,"slug":1663,"properties":1664,"entityType":934,"verifyStatus":26,"verifyTime":1661,"verifyNote":935,"languages":28,"translateLanguages":28,"viewCount":32,"primaryUrl":1673,"fullTextUrl":28,"authors":1674,"publicationType":1062,"publisherRelationship":1796,"citationCount":28,"citationInfo":28,"publishDate":1821,"publishYear":1389,"citationAnalyzeStatus":880,"lastCitationAnalyze":28,"indexDatabases":1822,"openAccess":28,"references":28,"isForceReanalyzing":1092},"03243aa6-329c-4765-94e2-6545d1fb6f61","2023-12-31T11:41:26.198+00:00","2025-01-03T18:06:01.280+00:00",[],"Laser-induced-formation-of-structures-of-silver-nanoparticles-in-fluoracrylate-films-impregnated-with-Ag-hfac-COD-molecules",{"abstract":1665,"title":1667,"references":1669,"doi":1671},{"EN":1666},"Methods of absorption spectroscopy and transmission electron microscopy (TEM) are used to study the processes of the laser-induced formation of silver nanoparticles (Ag NPs) in films of fluoracrylate polymers (FAPs) impregnated with Ag(hfac)COD molecules in a medium of supercritical CO2. An observation of the behavior of plasmon resonance (PR) bands in the impregnated FAP samples reveals the presence of a few features in the formation of Ag NPs under exposure to a continuous laser emission in the visible light range. Firstly, the formation of Ag NPs depends on the properties of the matrix (degree of polymerization) and on the power and dose of the laser exposure; its mechanism differs from the thermochemical one. Secondly, only in this case (using TEM) did we find the effect of the formation of periodic layered structures of nanoparticle layers situated inside a film perpendicular to the direction of emission. In addition, while recording the absorption spectra for a long time (a few days) after laser exposure, we revealed the effect of the postradiation growth of PR bands in the samples kept under darkroom conditions at room temperature. The models and formation mechanisms of Ag NPs are discussed for each case under consideration.",{"EN":1668},"Laser-induced formation of structures of silver nanoparticles in fluoracrylate films impregnated with Ag(hfac)COD molecules",{"VOID":1670},"V. V. Klimov, Nanoplasmonics (Fizmatlit, Moscow, 2009; Pan Stanford, Singapore, 2010).\nY. Zheng, Y. Yi, Y. Qu, Y. Wang, W. Zhang, and M. Du, Bioorg. Med. Chem. Lett. 16, 4127 (2006).\nK. S. Morley, P. B. Webb, N. V. Tokareva, A. P. Krasnov, V. K. Popov, J. Zhang, C. J. Roberts, and S. M. Howdle, Eur. Polym. J. 43, 307 (2007).\nT. I. Izaak, O. V. Babkina, I. N. Lapin, E. V. Leonova, O. V. Magaev, A. V. Danilov, A. S. Knyazev, O. V. Svetlichnyi, O. V. Vodyankina, G. M. Mokrousov, and N. S. Bogdanchikova, Nanotekhnika, No. 4, 34 (2006).\nA. Convertino, A. Capobianci, A. Valentini, and E. N. M. Cirillo, Adv. Mater. (Weinheim) 15(13), 1103 (2003).\nO. V. Dement’eva, M. A. Filippenko, M. E. Kartseva, and V. M. Rudoi, Al’m. Klin. Med. 17(Part 2), 317 (2008).\nT. Hassel, L. Lagonigro, A. C. Peacook, S. Yoda, P.D. Brown, P. J. A. Sazio, and S. M. Howdle, Adv. Funct. Mater. 18, 1265 (2008).\nL. Lu, A. Kobayashi, K. Tawa, and Y. Ozaki, Chem. Mater. 18, 4894 (2006).\nV. N. Bagratashvili, N. V. Minaev, A. A. Rybaltovsky, A. O. Rybaltovsky, S. I. Tsypina, V. Ya. Panchenko, and Yu. S. Zavorotny, Laser Phys. (2010) (in press).\nY. Deng, Y.-Yi. Sun, P. Wang, D.-G. Zhiang, X.-J. Jiao, Q.-J. Zhang, Y. Jiao, and X.-Q. Sun, Chin. Phys. Lett. 24(4), 954 (2007).\nJ. Qui, M. Shirai, T. Nakaya, J. Si, X. Jiang, C. Zhu, and K. Hirao, Appl. Phys. Lett. 81(16), 3040 (2002).\nS. Qu, H. Zeng, C. Zhao, J. Qiu, and C. Zhu, Chem. Phys. Lett. 384, 382 (2004).\nK. L. Kelly, E. Coronado, L. L. Zhao, and G. C. Schatz, J. Phys. Chem. B 107, 668 (2003).\nG. B. Sergeev, Nanochemistry (Elsevier, Amsterdam, The Netherlands, 2006; Moscow State University, Moscow, 2007).\nA. O. Rybaltovskii, A. A. Aksenov, V. I. Gerasimova, Yu. S. Zavorotnyi, V. K. Popov, V. V. Zosimov, and V. N. Bagratashvili, Sverkhkrit. Flyuidy: Teor. Prakt. 3(2), 74 (2008).\nA. O. Rybaltovskii, A. A. Aksenov, V. I. Gerasimova, V. V. Zosimov, V. K. Popov, A. B. Solov’eva, P. S. Timashev, and V. N. Bagratashvili, Sverkhkrit. Flyuidy: Teor. Prakt. 3(1), 50 (2008).\nT. Hassel, L. Lagonigro, A. C. Peacook, S. Yoda, P.D. Brown, P. J. A. Sazio, and S. M. Howdle, Adv. Funct. Mater. 18, 1265 (2008).\nE. V. Shtykova, K. A. Demko, V. V. Volkov, E. E. Said-Galiev, A. I. Stakhanov, and A. R. Khokhlov, Ross. Nanotekhol. 4(9–10), 136–143 (2009) [Nanotechnol. Russ. 4 (9–10), 700 (2009)].\nV. N. Bagratashvili, N. V. Minaev, A. A. Rybaltovsky, A. O. Rybaltovsky, S. I. Tsypina, V. Ya. Panchenko, and Yu. S. Zavorotny, Laser Phys. 20(1), 139 (2010).\nS. I. Molchanova, M. S. Demko, V. I. Sokolov, and E. V. Troitskaya, in Proceedings of the XII International Scientific Conference “Physical and Chemical Processes in the Selection of Atoms and Molecules and in Laser-, Plasma-, and Nanotechnologies,” Zvenigorod, Moscow region, Russia, March 31–April 4, 2008 (Zvenigorod, 2008), pp. 208–214.\nV. I. Gerasimova, Yu. S. Zavorotnyi, A. O. Rybaltovskii, A. A. Antoshkov, V. I. Sokolov, E. V. Troitskaya, and V. N. Bagratashvili, Sverkhkrit. Flyuidy: Teor. Prakt. (2010) (in press).\nA. O. Rybaltovskii, Yu. S. Zavorotnyi, N. V. Minaev, M. I. Samoilovich, P. S. Timashev, M. Yu. Tsvetkov, and V. N. Bagratashvili, Sverkhkrit. Flyuidy: Teor. Prakt. 4(2), 3 (2009).\nA. I. Kryukov, Z. A. Tkachenko, and D. I. Shvets, in Theoretical and Applied Chemistry of Metal β-Diketonates, Ed. by V. I. Spitsyn and L. I. Martynenko (Nauka, Moscow, 1985), pp. 101 [in Russian].\nA. D. Pomogailo, A. S. Rozenberg, and I. E. Uflyand, Nanoparticles of Metals in Polymers (Khimiya, Moscow, 2000) [in Russian].\nA. Yu. Taraeva, V. I. Gerasimova, Yu. S. Zavorotnyi, A. O. Rybaltovskii, and V. N. Bagratashvili, Sverkhkrit. Flyuidy: Teor. Prakt. 3(1), 59 (2008).\nE. N. Sobol’, V. N. Bagratashvili, V. K. Popov, A. E. Sobol’, E. E. Said-Galiev, and L. N. Nikitin, Zh. Fiz. Khim. 72(1), 23 (1998) [Russ. J. Phys. Chem. A 72 (1), 17 (1998)].\nA. Grossmann, “Wavelet Transforms and Edge Detection,” in Stochastic Processes in Physics and Engineering, Ed. by M. Hazewinkel (Reidel, New York, United States, 1988), pp. 149–157.\nN. M. Astaf’eva, Usp. Fiz. Nauk 166(11), 1145 (1996) [Phys.—Usp. 39 (11) 1085 (1996)].\nV. N. Bagratashvili, A. O. Rybaltovsky, N. V. Minaev, P. S. Timashev, V. V. Firsov, and V. I. Yusupov, Laser Phys. Lett. 7(5), 401 (2010).",{"VOID":1672},"10.1134\u002FS1995078010070025","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1134\u002FS1995078010070025",[1675,1690,1703,1718,1731,1744,1757,1770,1783],{"id":1676,"sortIndex":32,"researcher":28,"roles":1677,"affiliations":1678,"properties":1687,"displayName":1689,"givenName":28,"familyName":28},"5e1fcd1a-e2a2-42dd-9030-194ccb724485",[941],[1679],{"id":1680,"sortIndex":32,"affiliation":1681,"properties":28},"19baadf9-7bcf-40c4-84e8-c9022c523052",{"id":1680,"createTime":28,"updateTime":28,"relativeEntities":1682,"slug":28,"properties":1683,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1686,"statistic":28},[],{"title":1684},{"VI":1685},"Skobel’tsyn Research Institute of Nuclear Physics, Moscow State University, Moscow, Russia",[],{"title":1688},{"VI":1689},"A. O. Rybaltovskii",{"id":1691,"sortIndex":40,"researcher":28,"roles":1692,"affiliations":1693,"properties":1700,"displayName":1702,"givenName":28,"familyName":28},"7dc5fc89-b628-4495-921b-3638e0cb2588",[941],[1694],{"id":1680,"sortIndex":32,"affiliation":1695,"properties":28},{"id":1680,"createTime":28,"updateTime":28,"relativeEntities":1696,"slug":28,"properties":1697,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1699,"statistic":28},[],{"title":1698},{"VI":1685},[],{"title":1701},{"VI":1702},"V. I. Gerasimova",{"id":1704,"sortIndex":123,"researcher":28,"roles":1705,"affiliations":1706,"properties":1715,"displayName":1717,"givenName":28,"familyName":28},"e2947c59-2712-4c4e-bf25-d7f814efd17a",[941],[1707],{"id":1708,"sortIndex":32,"affiliation":1709,"properties":28},"a22c4a7b-52b5-4e53-b1e9-b71cddabab9f",{"id":1708,"createTime":28,"updateTime":28,"relativeEntities":1710,"slug":28,"properties":1711,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1714,"statistic":28},[],{"title":1712},{"VI":1713},"Institute of Laser and Information Technologies, Russian Academy of Sciences, Troitsk, Moscow oblast, Russia",[],{"title":1716},{"VI":1717},"N. V. Minaev",{"id":1719,"sortIndex":42,"researcher":28,"roles":1720,"affiliations":1721,"properties":1728,"displayName":1730,"givenName":28,"familyName":28},"edea265c-4877-4584-a203-b24a037a5568",[941],[1722],{"id":1708,"sortIndex":32,"affiliation":1723,"properties":28},{"id":1708,"createTime":28,"updateTime":28,"relativeEntities":1724,"slug":28,"properties":1725,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1727,"statistic":28},[],{"title":1726},{"VI":1713},[],{"title":1729},{"VI":1730},"V. I. Sokolov",{"id":1732,"sortIndex":45,"researcher":28,"roles":1733,"affiliations":1734,"properties":1741,"displayName":1743,"givenName":28,"familyName":28},"153b7bab-842f-490e-a5df-0af18e0e4c82",[941],[1735],{"id":1708,"sortIndex":32,"affiliation":1736,"properties":28},{"id":1708,"createTime":28,"updateTime":28,"relativeEntities":1737,"slug":28,"properties":1738,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1740,"statistic":28},[],{"title":1739},{"VI":1713},[],{"title":1742},{"VI":1743},"P. S. Timashev",{"id":1745,"sortIndex":46,"researcher":28,"roles":1746,"affiliations":1747,"properties":1754,"displayName":1756,"givenName":28,"familyName":28},"61c9e772-61ad-4de3-8f7e-18f5c758becf",[941],[1748],{"id":1708,"sortIndex":32,"affiliation":1749,"properties":28},{"id":1708,"createTime":28,"updateTime":28,"relativeEntities":1750,"slug":28,"properties":1751,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1753,"statistic":28},[],{"title":1752},{"VI":1713},[],{"title":1755},{"VI":1756},"E. A. Troitskaya",{"id":1758,"sortIndex":48,"researcher":28,"roles":1759,"affiliations":1760,"properties":1767,"displayName":1769,"givenName":28,"familyName":28},"b6de519b-c134-4eb4-825f-0777d3a82944",[941],[1761],{"id":1680,"sortIndex":32,"affiliation":1762,"properties":28},{"id":1680,"createTime":28,"updateTime":28,"relativeEntities":1763,"slug":28,"properties":1764,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1766,"statistic":28},[],{"title":1765},{"VI":1685},[],{"title":1768},{"VI":1769},"V. V. Firsov",{"id":1771,"sortIndex":49,"researcher":28,"roles":1772,"affiliations":1773,"properties":1780,"displayName":1782,"givenName":28,"familyName":28},"6aff54b9-0ed4-4817-a5f9-18953ff47768",[941],[1774],{"id":1708,"sortIndex":32,"affiliation":1775,"properties":28},{"id":1708,"createTime":28,"updateTime":28,"relativeEntities":1776,"slug":28,"properties":1777,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1779,"statistic":28},[],{"title":1778},{"VI":1713},[],{"title":1781},{"VI":1782},"V. I. Yusupov",{"id":1784,"sortIndex":357,"researcher":28,"roles":1785,"affiliations":1786,"properties":1793,"displayName":1795,"givenName":28,"familyName":28},"56a6d360-3424-43d8-ab02-ae4c82d6ba00",[941],[1787],{"id":1708,"sortIndex":32,"affiliation":1788,"properties":28},{"id":1708,"createTime":28,"updateTime":28,"relativeEntities":1789,"slug":28,"properties":1790,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1792,"statistic":28},[],{"title":1791},{"VI":1713},[],{"title":1794},{"VI":1795},"V. N. Bagratashvili",{"url":1673,"publisher":1797,"properties":1817},{"id":868,"createTime":869,"updateTime":870,"relativeEntities":1798,"slug":872,"properties":1799,"entityType":25,"verifyStatus":880,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":32,"subjectFields":1803,"manageAffiliations":1804,"indexDatabases":1805,"url":28,"thumbnailPath":28,"statistic":1812,"gsStatistic":28,"type":28,"analyzePriority":28},[],{"issn":1800,"title":1801,"eissn":1802},{"VOID":875},{"EN":877},{"VOID":879},[],[],[1806],{"id":885,"indexDatabase":1807,"url":891,"indexYears":892,"academicFieldIds":28,"indexDatabaseRanking":893},{"id":775,"createTime":28,"updateTime":28,"relativeEntities":1808,"label":1809,"description":1810,"key":781,"publicationTags":1811,"standard":28},[],{"EN":778,"VI":778},{"EN":778,"VI":780},[783],{"impactFactor":32,"impactFactorByYear":1813,"i10Index":142,"i10IndexLast5Year":123,"totalPublication":899,"totalPublicationByYear":1814,"totalCitation":901,"totalCitationByYear":1815,"totalCitationPerPublication":903,"totalCitationPerPublicationByYear":1816,"hindexLast5Year":199,"hindex":199},{"2012":424,"2013":840,"2014":284,"2015":698,"2016":896,"2017":897,"2018":898,"2019":367,"2020":286,"2021":821,"2022":123},{"2008":145,"2009":357,"2010":323,"2011":145,"2012":205,"2013":135,"2014":126,"2015":145,"2016":51,"2017":357,"2018":129,"2019":48,"2020":49},{"2008":574,"2009":329,"2010":607,"2011":151,"2012":565,"2013":578,"2014":156,"2015":139,"2016":688,"2017":152,"2018":158,"2019":134,"2020":281},{"2008":905,"2009":906,"2010":907,"2011":908,"2012":145,"2013":909,"2014":48,"2015":910,"2016":45,"2017":911,"2018":912,"2019":913,"2020":914},{"pages":1818,"volume":1820},{"VOID":1819},"435-445",{"VOID":1387},"2010-08-29",[893],{"id":1824,"createTime":1825,"updateTime":1825,"relativeEntities":1826,"slug":28,"properties":1827,"entityType":934,"verifyStatus":880,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":32,"primaryUrl":1836,"fullTextUrl":28,"authors":1837,"publicationType":1062,"publisherRelationship":1866,"citationCount":28,"citationInfo":28,"publishDate":1891,"publishYear":1090,"citationAnalyzeStatus":880,"lastCitationAnalyze":28,"indexDatabases":1892,"openAccess":28,"references":28,"isForceReanalyzing":1092},"03d2ef25-38ba-46c1-ba33-ae2683fbbab9","2023-12-22T04:33:08.177+00:00",[],{"abstract":1828,"title":1830,"references":1832,"doi":1834},{"EN":1829},"The presence of organic solvents (acetonitrile, acetone, and dioxan) as additives (up to 5 vol %) in an aqueous solution of alkylmesothia- and oxacarbocyanine dyes containing KCl and\u002For Mg(NO3)2 results in a variation of the rate of both J-aggregation and deaggregation. The rate of J-aggregation is increased as well as decreased in the presence of organic solvents as additives. For thiacarbocyanine dye, increase of the additive concentration up to 3–5 vol % results in a decrease of the rate of J-aggregation, as well as an increase of the rate of deaggregation. For oxacarbocyanine, the presence of additives up to a critical concentration results in an increase of J-aggregation. At a higher than critical concentration, the rate of J-aggregation is decreased so that no J-aggregates are formed.",{"EN":1831},"Effect of organic solvents on kinetics of J-aggregation and deaggregation of polymethine dyes in aqueous solution",{"VOID":1833},"T. H. James, The Theory of the Photographic Process (Macmillan, New York, 1977; Khimiya, Leningrad, 1980).\nB. H. Carroll, G. C. Higgins, and T. H. James, Introduction to Photographic Theory: The Silver Halide Process (Wiley, New York, 1980).\nB. I. Shapiro, Theoretical Fundamentals of Photographic Process (Editorial URSS, Moscow, 2000) [in Russian].\nE. I. Mal’tsev, D. A. Lypenko, B. I. Shapiro, and A. V. Vannikov, Zh. Nauchn. Prikl. Fotogr. 46(1), 13–19 (2001).\nI. G. Scheblykin, L. S. Lepnev, A. G. Vitukhnovsky, and M. van der Auweraer, J. Lumin. 94–95, 461–464 (2001).\nS. Bourbon, M. Y. Gao, and S. Kirstein, Synth. Met. 101(1–3), 152–153 (1999).\nF. Sasaki and S. Kobayashi, J. Lumin. 72–74, 538–540 (1997).\nR. V. Markov, A. I. Plekhanov, S. G. Rautian, V. P. Safonov, N. A. Orlova, V. V. Shelkovnikov, and V. V. Volkov, Opt. Spektrosk. 85(4), 643–647 (1998) [Opt. Spectrosc. 85 (4), 588–594 (1998)].\nA. K. Chibisov, H. Görner, and T. D. Slavnova, Chem. Phys. Lett. 390, 240–245 (2004).\nT. D. Slavnova, A. K. Chibisov, and H. Görner, J. Phys. Chem. A 109, 4758–4765 (2005).\nH. Görner, A. K. Chibisov, and T. D. Slavnova, J. Phys. Chem. B 110, 3917–3923 (2006).\nT. D. Slavnova, H. Görner, and A. K. Chibisov, J. Phys. Chem. A 111, 10 023–10 031 (2007).\nA. K. Chibisov, T. D. Slavnova, and H. Görner, Chem. Phys. Lett. 424, 307–311 (2006).",{"VOID":1835},"10.1134\u002FS1995078011020054","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1134\u002FS1995078011020054",[1838,1853],{"id":1839,"sortIndex":32,"researcher":28,"roles":1840,"affiliations":1841,"properties":1850,"displayName":1852,"givenName":28,"familyName":28},"92aa80a3-2cac-409d-be3b-e869d60df788",[941],[1842],{"id":1843,"sortIndex":32,"affiliation":1844,"properties":28},"3e632579-c413-4ab4-80ad-9c55edd9e49a",{"id":1843,"createTime":28,"updateTime":28,"relativeEntities":1845,"slug":28,"properties":1846,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1849,"statistic":28},[],{"title":1847},{"EN":1848},"Photochemistry Center, Russian Academy of Sciences, Moscow, Russia",[],{"title":1851},{"VI":1852},"A. K. Chibisov",{"id":1854,"sortIndex":40,"researcher":28,"roles":1855,"affiliations":1856,"properties":1863,"displayName":1865,"givenName":28,"familyName":28},"d605f3ca-9d9c-4ed8-b528-82cff30ed94f",[941],[1857],{"id":1843,"sortIndex":32,"affiliation":1858,"properties":28},{"id":1843,"createTime":28,"updateTime":28,"relativeEntities":1859,"slug":28,"properties":1860,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1862,"statistic":28},[],{"title":1861},{"EN":1848},[],{"title":1864},{"VI":1865},"G. V. Zakharova",{"url":1836,"publisher":1867,"properties":1887},{"id":868,"createTime":869,"updateTime":870,"relativeEntities":1868,"slug":872,"properties":1869,"entityType":25,"verifyStatus":880,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":32,"subjectFields":1873,"manageAffiliations":1874,"indexDatabases":1875,"url":28,"thumbnailPath":28,"statistic":1882,"gsStatistic":28,"type":28,"analyzePriority":28},[],{"issn":1870,"title":1871,"eissn":1872},{"VOID":875},{"EN":877},{"VOID":879},[],[],[1876],{"id":885,"indexDatabase":1877,"url":891,"indexYears":892,"academicFieldIds":28,"indexDatabaseRanking":893},{"id":775,"createTime":28,"updateTime":28,"relativeEntities":1878,"label":1879,"description":1880,"key":781,"publicationTags":1881,"standard":28},[],{"EN":778,"VI":778},{"EN":778,"VI":780},[783],{"impactFactor":32,"impactFactorByYear":1883,"i10Index":142,"i10IndexLast5Year":123,"totalPublication":899,"totalPublicationByYear":1884,"totalCitation":901,"totalCitationByYear":1885,"totalCitationPerPublication":903,"totalCitationPerPublicationByYear":1886,"hindexLast5Year":199,"hindex":199},{"2012":424,"2013":840,"2014":284,"2015":698,"2016":896,"2017":897,"2018":898,"2019":367,"2020":286,"2021":821,"2022":123},{"2008":145,"2009":357,"2010":323,"2011":145,"2012":205,"2013":135,"2014":126,"2015":145,"2016":51,"2017":357,"2018":129,"2019":48,"2020":49},{"2008":574,"2009":329,"2010":607,"2011":151,"2012":565,"2013":578,"2014":156,"2015":139,"2016":688,"2017":152,"2018":158,"2019":134,"2020":281},{"2008":905,"2009":906,"2010":907,"2011":908,"2012":145,"2013":909,"2014":48,"2015":910,"2016":45,"2017":911,"2018":912,"2019":913,"2020":914},{"pages":1888,"volume":1890},{"VOID":1889},"161-165",{"VOID":1088},"2011-05-01",[893],{"id":1894,"createTime":1895,"updateTime":1895,"relativeEntities":1896,"slug":28,"properties":1897,"entityType":934,"verifyStatus":880,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":32,"primaryUrl":1906,"fullTextUrl":28,"authors":1907,"publicationType":1062,"publisherRelationship":1962,"citationCount":28,"citationInfo":28,"publishDate":1988,"publishYear":1989,"citationAnalyzeStatus":880,"lastCitationAnalyze":28,"indexDatabases":1990,"openAccess":28,"references":28,"isForceReanalyzing":1092},"03dbd199-faed-4df9-bc7c-40975528b6d6","2024-01-10T03:16:22.632+00:00",[],{"abstract":1898,"title":1900,"references":1902,"doi":1904},{"EN":1899},"Mechanochemical exfoliation of graphite materials is one method for obtaining graphene nanoplatelets. The mechanochemical synthesis of graphene nanoplatelets, which includes the synthesis of an expanded graphite compound and mechanochemical treatment, is studied experimentally. The expanded graphite compound is obtained by the cold expansion of graphite intercalated with a solution of ammonium persulfate in sulfuric acid. The resulting expanded graphite compound is treated with a base (urea) to reduce acidity and the redox potential of the system before adding organic components. Glycerol is used as a medium for mechanochemical exfoliation.",{"EN":1901},"Mechanochemical synthesis of graphene nanoplatelets from expanded graphite compound",{"VOID":1903},"C. Soldano, A. Mahmood, and E. Dujardin, “Production, properties and potential of graphene,” Carbon 48, 2127–2150 (2010).\nV. Singh, D. Joung, L. Zhai, et al., “Graphene based materials: past, present and future,” Prog. Mater. Sci. 56, 1178–1271 (2011).\nA. K. Geim and K. S. Novoselov, “The rise of graphene,” Nature Mater. 6, 183–191 (2007).\nA. K. Geim, “Graphene: status and prospects,” Science 324 (5934), 1530–1534 (2009).\nK. S. Novoselov, V. I. Fal’ko, L. Colombo, et al., “A roadmap for graphene,” Nature 490, 192–200 (2012).\nK. S. Novoselov, “Graphene: materials in the flatland,” Usp. Fiz. Nauk 181, 1299–1311 (2011).\nE. D. Graifer, V. G. Makotchenko, A. S. Nazarov, S. J. Kim, and V. E. Fedorov, “Graphene: chemical approaches to the synthesis and modification,” Russ. Chem. Rev. 80, 751 (2011).\nM. Lotya, Y. Hernandez, P. J. King, et al., “Liquid phase production of graphene by exfoliation of graphite in surfactant\u002Fwater solutions,” J. Am. Chem. Soc. 131, 3611–3620 (2009).\nY. Hernandez, V. Nicolosi, M. Lotya, et al., “High yield production of graphene by liquid phase exfoliation of graphite,” Nature Nanotechnol. 3, 563–568 (2008).\nA. V. Nikolaeva, “Preparation and study of aqueous suspensions of graphene particles in the presence of surfactants,” Extended Abstract of Cand. Sci. (Tech. Sci.) Dissertation (Res. Inst. Graphite-Based Struct. Mater. NIIGRAFIT, Moscow, 2015).\nJ. H. Lee, D. W. Shin, V. G. Makotchenko, et al., “One-step exfoliation synthesis of easily soluble graphite and transparent conducting graphene sheets,” Adv. Mater. 21, 4383–4387 (2009).\nV. Leon, M. Quintana, M. A. Herrero, et al., “Fewlayer graphenes from ball-milling of graphite with melamine,” Chem. Commun. 47, 10936–10938 (2011).\nL. Liu, Zh. Xiong, D. Hu, et al., “Production of high quality single-or few-layered graphene by solid exfoliation of graphite in the presence of ammonia borane,” Chem. Commun. 49, 7890 (2013).\nC. Damm, T. J. Nacken, and W. Peukert, “Quantitative evaluation of delamination of graphite by wet media milling,” Carbon 81, 284–294 (2015).\nC. Knieke, A. Berger, M. Voigt, et al., “Scalable production of graphene sheets by mechanical delamination,” Carbon 48, 3196–3204 (2010).\nR. Nandhini, P. A. Mini, B. Avinash, et al., “Supercapacitor electrodes using nanoscale activated carbon from graphite by ball milling,” Mater. Lett. 87, 165–168 (2012).\nI.-Y. Jeon, Y.-R. Shin, G.-J. Sohn, et al., “Edge-carboxylated graphene nanosheets via ball milling,” Proc. Natl. Acad. Sci. USA 109, 5588–5593 (2012).\nI.-Y. Jeon, H. M. Kim, I. T. Choi, et al., “High-performance dye-sensitized solar cells using edge-halogenated graphene nanoplatelets as counter electrodes,” Nano Energy 13, 336–345 (2015).\nT. S. Ong and H. Yang, “Effect of atmosphere on the mechanical milling of natural graphite,” Carbon 38, 2077–2085 (2000).\nY. Wang, L. Yang, R. Hu, et al., “A stable and highcapacity anode for lithium-ion battery: Fe2O3 wrapped by few layered graphene,” J. Power Sources 288, 314–319 (2015).\nW. Sun, R. Hu, H. Liu, et al., “Embedding nano-silicon in graphene nanosheets by plasma assisted milling for high capacity anode materials in lithium ion batteries,” J. Power Sources 268, 610–618 (2014).\nM. Yu, D. Shao, F. Lu, et al., “ZnO\u002Fgraphene nanocomposite fabricated by high energy ball milling with greatly enhanced lithium storage capability,” Electrochem. Commun. 34, 312–315 (2013).\nH. N. Tien and S. H. Hur, “Synthesis of highly durable sulfur doped graphite nanoplatelet electrocatalyst by a fast and simple wet ball milling process,” Mater. Lett. 161, 399–403 (2015).\nA. V. Melezhyk and A. G. Tkachev, “Synthesis of graphene nanoplatelets from peroxosulfate graphite intercalation compounds,” Nanosyst.: Phys., Chem., Math. 5, 294–306 (2014).\nM. Adati, T. Fudzii, and S. Khori, “Preparation of electroconductive graphite material,” Jpn. Request No. 61 127612 (1986).\nA. V. Melezhik, L. V. Makarova, M. M. Konoplya, and A. A. Chuiko, “Synthesis and morphology of particles of microflake graphite,” Khim. Tverd. Topl., No. 3, 137–143 (1991).\nA. V. Melezhik, R. B. Rudyi, L. V. Makarova, and A. A. Chuiko, “Synthesis and properties of self-binding microflake graphite,” Zh. Prikl. Khim. 68, 54–57 (1995).\nJ. C. Meyer, A. K. Geim, M. I. Katsnelson, et al., “The structure of suspended graphene sheets,” Nature 446, 60–63 (2007).\nM. D. Fischbein and M. Drndic, “Electron beam nanosculpting of suspended graphene sheets,” Appl. Phys. Lett. 93, 113107 (2008).\nD. Graf, F. Molitor, K. Ensslin, et al., “Spatially resolved Raman spectroscopy of single-and few-layer graphene,” Nano Lett. 7, 238–242 (2007).",{"VOID":1905},"10.1134\u002FS1995078016040121","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1134\u002FS1995078016040121",[1908,1923,1936,1949],{"id":1909,"sortIndex":32,"researcher":28,"roles":1910,"affiliations":1911,"properties":1920,"displayName":1922,"givenName":28,"familyName":28},"08507311-3707-4f39-a074-e2e58afd1f42",[941],[1912],{"id":1913,"sortIndex":32,"affiliation":1914,"properties":28},"e1a7f1e5-f161-4380-8490-a7c570e75a19",{"id":1913,"createTime":28,"updateTime":28,"relativeEntities":1915,"slug":28,"properties":1916,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1919,"statistic":28},[],{"title":1917},{"VI":1918},"Tambov State Technical University, Tambov, Russia",[],{"title":1921},{"VI":1922},"A. V. Melezhik",{"id":1924,"sortIndex":40,"researcher":28,"roles":1925,"affiliations":1926,"properties":1933,"displayName":1935,"givenName":28,"familyName":28},"14803712-a3c7-4627-89a3-fbb263120f5c",[941],[1927],{"id":1913,"sortIndex":32,"affiliation":1928,"properties":28},{"id":1913,"createTime":28,"updateTime":28,"relativeEntities":1929,"slug":28,"properties":1930,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1932,"statistic":28},[],{"title":1931},{"VI":1918},[],{"title":1934},{"VI":1935},"V. F. Pershin",{"id":1937,"sortIndex":123,"researcher":28,"roles":1938,"affiliations":1939,"properties":1946,"displayName":1948,"givenName":28,"familyName":28},"b750e188-3f6f-4b46-b142-ab0476eadb1d",[941],[1940],{"id":1913,"sortIndex":32,"affiliation":1941,"properties":28},{"id":1913,"createTime":28,"updateTime":28,"relativeEntities":1942,"slug":28,"properties":1943,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1945,"statistic":28},[],{"title":1944},{"VI":1918},[],{"title":1947},{"VI":1948},"N. R. Memetov",{"id":1950,"sortIndex":42,"researcher":28,"roles":1951,"affiliations":1952,"properties":1959,"displayName":1961,"givenName":28,"familyName":28},"588dca26-5877-4cfa-9b90-993c51a81d79",[941],[1953],{"id":1913,"sortIndex":32,"affiliation":1954,"properties":28},{"id":1913,"createTime":28,"updateTime":28,"relativeEntities":1955,"slug":28,"properties":1956,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1958,"statistic":28},[],{"title":1957},{"VI":1918},[],{"title":1960},{"VI":1961},"A. G. Tkachev",{"url":1906,"publisher":1963,"properties":1983},{"id":868,"createTime":869,"updateTime":870,"relativeEntities":1964,"slug":872,"properties":1965,"entityType":25,"verifyStatus":880,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":32,"subjectFields":1969,"manageAffiliations":1970,"indexDatabases":1971,"url":28,"thumbnailPath":28,"statistic":1978,"gsStatistic":28,"type":28,"analyzePriority":28},[],{"issn":1966,"title":1967,"eissn":1968},{"VOID":875},{"EN":877},{"VOID":879},[],[],[1972],{"id":885,"indexDatabase":1973,"url":891,"indexYears":892,"academicFieldIds":28,"indexDatabaseRanking":893},{"id":775,"createTime":28,"updateTime":28,"relativeEntities":1974,"label":1975,"description":1976,"key":781,"publicationTags":1977,"standard":28},[],{"EN":778,"VI":778},{"EN":778,"VI":780},[783],{"impactFactor":32,"impactFactorByYear":1979,"i10Index":142,"i10IndexLast5Year":123,"totalPublication":899,"totalPublicationByYear":1980,"totalCitation":901,"totalCitationByYear":1981,"totalCitationPerPublication":903,"totalCitationPerPublicationByYear":1982,"hindexLast5Year":199,"hindex":199},{"2012":424,"2013":840,"2014":284,"2015":698,"2016":896,"2017":897,"2018":898,"2019":367,"2020":286,"2021":821,"2022":123},{"2008":145,"2009":357,"2010":323,"2011":145,"2012":205,"2013":135,"2014":126,"2015":145,"2016":51,"2017":357,"2018":129,"2019":48,"2020":49},{"2008":574,"2009":329,"2010":607,"2011":151,"2012":565,"2013":578,"2014":156,"2015":139,"2016":688,"2017":152,"2018":158,"2019":134,"2020":281},{"2008":905,"2009":906,"2010":907,"2011":908,"2012":145,"2013":909,"2014":48,"2015":910,"2016":45,"2017":911,"2018":912,"2019":913,"2020":914},{"pages":1984,"volume":1986},{"VOID":1985},"421-429",{"VOID":1987},"11","2016-08-12",2016,[893],{"id":1992,"createTime":1993,"updateTime":1994,"relativeEntities":1995,"slug":1996,"properties":1997,"entityType":934,"verifyStatus":26,"verifyTime":1994,"verifyNote":935,"languages":28,"translateLanguages":28,"viewCount":32,"primaryUrl":2006,"fullTextUrl":28,"authors":2007,"publicationType":1062,"publisherRelationship":2101,"citationCount":28,"citationInfo":28,"publishDate":2127,"publishYear":2128,"citationAnalyzeStatus":880,"lastCitationAnalyze":28,"indexDatabases":2129,"openAccess":28,"references":28,"isForceReanalyzing":1092},"03f464ed-ae52-416c-8b26-0090df3dff7c","2024-01-12T00:10:35.024+00:00","2024-12-18T21:43:59.812+00:00",[],"Preparing-magnetic-nanoparticles-with-controllable-anisotropy-of-functional-properties-within-a-porous-matrix-of-alumina",{"abstract":1998,"title":2000,"references":2002,"doi":2004},{"EN":1999},"To prepare magnetic anisotropic nanostructures, the films of porous alumina obtained by the two-step anodization technique were used as the matrix in this work. The electrocrystallization of metals in porous alumina allowed us to form threadlike nanoparticles with narrow size distributions and controllable geometric anisotropy. It was shown that the magnetic properties of Co anisotropic nanoparticles largely depend on the crystal structure of the sample, while the behavior of Ni nanowires in the magnetic field is fully determined by the form-factor nanostructures.",{"EN":2001},"Preparing magnetic nanoparticles with controllable anisotropy of functional properties within a porous matrix of alumina",{"VOID":2003},"D. Sellmyer and R. Skomski, Advanced Magnetic Nanostructures (Springer, New York, 2006), p. 508.\nL. Sun, Y. Hao, C.-L. Chien, and P. C. Searson, IBM J. Res. Dev. 49(1), 79 (2005).\nH. Masuda and K. Fukuda, Science (Washington) 268(5216), 1466 (1995).\nW. Lee, R. Ji, U. Gösele, and K. Nielsch, Nat. Mater. 5,741 (2006).\nT. Kyotani, W. H. Xu, Y. Yokoyama, J. Inahara, H. Touhara, and A. Tomita, J. Membr. Sci. 196(2), 231 (2002).\nS. Shingubara, J. Nanopart. Res. 5(1–2), 17 (2003).\nK. S. Napolskii, P. J. Barczuk, S. Yu. Vassiliev, A. G. Veresov, G. A. Tsirlina, and P. J. Kulesza, Electrochim. Acta 52, 7910 (2007).\nG. Saedi, G. Brehm, S. Schneider, K. Nielsch, R. B. Wehrspohn, J. Choi, H. Hofmeister, and U. Gösele, J. Appl. Phys. 91(5), 3243 (2003).\nB. Lakshmi, P. K. Dorhout, and C. R. Martin, Chem. Mater. 9(3), 857 (1997).\nK. S. Napolskii, A. A. Eliseev, N. V. Yesin, A. V. Lukashin, Yu. D. Tretyakov, N. A. Grigorieva, S. V. Grigoriev, and H. Eckerlebe, Physica E (Amsterdam) 37(1–2), 178 (2007).",{"VOID":2005},"10.1134\u002FS1995078009030057","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1134\u002FS1995078009030057",[2008,2023,2036,2049,2062,2086],{"id":2009,"sortIndex":32,"researcher":28,"roles":2010,"affiliations":2011,"properties":2020,"displayName":2022,"givenName":28,"familyName":28},"4b02e80f-52d3-48ca-9534-a0ff25225ee7",[941],[2012],{"id":2013,"sortIndex":32,"affiliation":2014,"properties":28},"3680a67b-f276-4bbd-8c83-0682234a3056",{"id":2013,"createTime":28,"updateTime":28,"relativeEntities":2015,"slug":28,"properties":2016,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2019,"statistic":28},[],{"title":2017},{"VI":2018},"Faculty of Materials Science, Moscow State University, Moscow, Russia",[],{"title":2021},{"VI":2022},"I. V. Roslyakov",{"id":2024,"sortIndex":40,"researcher":28,"roles":2025,"affiliations":2026,"properties":2033,"displayName":2035,"givenName":28,"familyName":28},"77cf15a3-005e-4f48-a617-caa50c813e5d",[941],[2027],{"id":2013,"sortIndex":32,"affiliation":2028,"properties":28},{"id":2013,"createTime":28,"updateTime":28,"relativeEntities":2029,"slug":28,"properties":2030,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2032,"statistic":28},[],{"title":2031},{"VI":2018},[],{"title":2034},{"VI":2035},"K. S. Napol’skii",{"id":2037,"sortIndex":123,"researcher":28,"roles":2038,"affiliations":2039,"properties":2046,"displayName":2048,"givenName":28,"familyName":28},"8a99ad07-2e9c-4100-9263-2f79a7463db6",[941],[2040],{"id":2013,"sortIndex":32,"affiliation":2041,"properties":28},{"id":2013,"createTime":28,"updateTime":28,"relativeEntities":2042,"slug":28,"properties":2043,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2045,"statistic":28},[],{"title":2044},{"VI":2018},[],{"title":2047},{"VI":2048},"A. A. Eliseev",{"id":2050,"sortIndex":42,"researcher":28,"roles":2051,"affiliations":2052,"properties":2059,"displayName":2061,"givenName":28,"familyName":28},"6ad1a477-a828-47a3-bec8-fe3e931b4d07",[941],[2053],{"id":2013,"sortIndex":32,"affiliation":2054,"properties":28},{"id":2013,"createTime":28,"updateTime":28,"relativeEntities":2055,"slug":28,"properties":2056,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2058,"statistic":28},[],{"title":2057},{"VI":2018},[],{"title":2060},{"VI":2061},"A. V. 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