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New Journal of Chemistry

  1369-9261

 

 

Cơ quản chủ quản:  ROYAL SOC CHEMISTRY , Royal Society of Chemistry

Lĩnh vực:
Chemistry (miscellaneous)CatalysisMaterials Chemistry

Các bài báo tiêu biểu

Production of novel carbon nanostructures by electrochemical reduction of polychlorinated organic rings under mild conditions for supercapacitors
Tập 45 Số 32 - Trang 14765-14778
Züleyha Kudaş, Emir Çepni̇, Emre Gür, Duygu Ekinci

Here, new carbon-based nanostructures were prepared via a one-step electrochemical method using hexagonal and pentagonal polychlorinated organic rings as the carbon source.

Self-reversible mechanochromism and aggregation induced emission in neutral triarylmethanes and their application in water sensing
Tập 42 Số 24 - Trang 20227-20238
T. Divya, Kalluruttimmal Ramshad, Saheer V. Chaluvalappil, Lakshmi Chakkumkumarath

Neutral triarylmethanes exhibit intramolecular exciplex formation, self-reversible mechanochromism, and aggregation induced/viscosity-dependent emission and sense water in organic solvents.

A novel approach to photoelectrochemical immunoassay for procalcitonin on the basis of SnS<sub>2</sub>/CdS
Tập 44 Số 35 - Trang 15281-15288
Mengdi Wang, Xuejing Liu, Hongying Jia, Yuyang Li, Xing Ren, Dan Wu, Huan Wang, Qin Wei, Huangxian Ju

A label-free photoelectrochemical (PEC) immunoassay system based on the one-step synthesis of SnS2/CdS nanocomposites is successfully constructed for sensitively analyzing procalcitonin (PCT).

Preparation of a magnetic molecularly imprinted polymer for the selective adsorption of chlordiazepoxide and its determination by central composite design optimized HPLC
Tập 42 Số 17 - Trang 14444-14452
Saeid Khodadoust, Tahereh Nasiriani, Fatemeh Zeraatpisheh

Core–shell magnetic molecularly imprinted polymer nanoparticles (MMIP-NPs) were prepared and applied in the extraction of chlordiazepoxide from various samples.

New sulfonated copoly(triazole imide)s synthesized by a click chemistry reaction with improved oxidative stability
Tập 41 Số 14 - Trang 6849-6856
Asheesh Singh, Anaparthi Ganesh Kumar, Soumendu Bisoi, Susanta Banerjee

New sulfonated copoly(triazole imide)s synthesized by a click chemistry reaction with improved oxidative stability.

Graphitic carbon nitride synthesized by simple pyrolysis: role of precursor in photocatalytic hydrogen production
Tập 43 Số 18 - Trang 6909-6920
Mohammed Ismael, Ying Wu, Dereje H. Taffa, Patrick Bottke, Michael Wark

g-C3N4 with structural defects and low polymerization synthesized by urea as the precursor for photocatalytic H2 production under visible light.

Electronic, structural, optical, and photocatalytic properties of graphitic carbon nitride
Tập 43 Số 34 - Trang 13647-13653
Luís Henrique Cardozo Amorin, Victor Yuudi Suzuki, Natália Herédia de Paula, José Leonil Duarte, Marco Aurélio Toledo da Silva, Carlton A. Taft, Felipe A. La Porta

Graphitic carbon nitride (g-C3N4)-based materials exhibit an organized layered porous structure and a band position optimum for the development of various optoelectronic devices and photocatalysts.

Porous nano-MnO<sub>2</sub>: large scale synthesis via a facile quick-redox procedure and application in a supercapacitor
Tập 35 Số 2 - Trang 469-475
Hongqiang Wang, Gui Fen Yang, Qingyu Li, Xinxian Zhong, Fangping Wang, Zesheng Li, Yahao Li
Influence of Na and Nb co-substitution on electrochemical performance of ternary cathode materials for Li-ion batteries
Tập 42 Số 5 - Trang 3444-3451
Milad Ghorbanzadeh, Saeed Farhadi, Reza Riahifar, S.M.M. Hadavi

In the present study, Li1−xNax(Ni0.6Co0.2Mn0.2−yNby)O2, a novel layered cathodic compound, is synthesized using an economically feasible polymer pyrolysis method.

The impact of aluminum impurity on the regenerated lithium nickel cobalt manganese oxide cathode materials from spent LIBs
Tập 41 Số 19 - Trang 10959-10965
Jie Ren, Ruhong Li, Yuanlong Liu, Yarui Cheng, Deying Mu, Rujuan Zheng, Jianchao Liu, Changsong Dai

An effective recycling process from spent LIBs has been developed, and the tolerability of aluminum was studied in this work.