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Hudis, Techniques and Applications of Plasma Chemistry, J. R. Hollahan and A. T. Bell, eds., John Wiley, New York, (1974).\nH. Yasuda, Plasma Polymerization, Academic Press, Inc., London, (1985).\nM. Kuzuya, A. Noguchi, M. Ishikawa, A. Koide, K. Sawada, A. Ito, and N. Noda, J. Phys. Chem. 95, 2398 (1991).\nM. Kuzuya, H. Ito, S. Kondo, N. Noda, and A. Noguchi, Macromols.24, 6612 (1991).\nM. Kuzuya, A. Noguchi, H. Ito, S. Kondo, and N. Noda, J. Polym. Sci. Polym. Chem. 29, 1 (1991).\nM. Kuzuya, N. Noda, S. Kondo, K. Washino, and A. Noguchi, J. Am. Chem. Soc. 114, 6505 (1992).\nM. Kuzuya, J. Niwa, and H. Ito, Macromolecules 26, 1990 (1993).\nM. Kuzuya, K. Morisaki, J. Niwa, Y. Yamauchi, and K. Xu, J. Phys. Chem. 98, 11301 (1994).\nM. Kuzuya, Y. Yamauchi, J. Niwa, S. Kondo, and Y. Sakai, Chem. Pharm. Bull. 43, 2037 (1995).\nM. Kuzuya, J. Niwa, and S. Kondo, Mol. Cryst. Liq. Cryst. 277, 343 (1996).\nM. Kuzuya, Y. Matsuno, T. Yamashiro, and M. Tsuiki, Plasms. Polyms. 2, 79 (1997).\nM. Kuzuya, T. Yamashiro, S. Kondo, M. Sugito, and M. Mouri, Macromols.31, 3225 (1998).\nM. Kuzuya, S. Kondo, M. Sugito, and T. Yamashiro, Macromols.31, 3230 (1998).\nM. Kuzuya, Y. Sasai, and S. Kondo, J. Photopolym. Sci. Technol. 12, 75(1999).\nM. Kuzuya, Y. Yamauchi, and S. Kondo, J. Phys. Chem. B. 103, 8051 (1999).\nM. Kuzuya, A. Noguchi, H. Ito, and M. Ishikawa, DDS 6, 119 (1991).\nM. Kuzuya, H. Ito, N. Noda, I. Yamakawa, and S. Watanabe, DDS 6, 437 (1991).\nI. Yamakawa, S. Watanabe, Y. Matsuno, and M. Kuzuya, Biol. Pharm. Bull. 16, 182 (1993).\nM. Ishikawa, Y. Matsuno, A. Noguchi, and M. Kuzuya, Chem. Pharm. Bull. 41, 1626 (1993).\nM. Kuzuya and Y. Matsuno, DDS 8, 149 (1993).\nM. Ishikawa, T. Noguchi, J. Niwa, and M. Kuzuya, Chem. Pharm. Bull. 43, 2215 (1995).\nM. Kuzuya, M. Ishikawa, T. Noguchi, J. Niwa, and S. Kondo, Chem. Pharm. Bull. 44, 192 (1996).\nM. Ishikawa, K. Hattori, S. Kondo, and M. Kuzuya, Chem. Pharm. Bull. 44, 1232 (1996).\nM. Kuzuya, K. Ito, and S. Kondo, Chem. Pharm. Bull. (in press).\nM. Kuzuya, Y. Sasai, M. Mouri, and S. Kondo, Thin Solid Films (in press).\nF. K. Kneub¨ uhl, J. Chem. Phys. 33, 1074 (1960).\nE. L. Cochran, F. J. Adrian, and V. A. Bowers, J. Chem. Phys. 34, 1161 (1961).",{"EN":78},"Plasma-induced surface radicals formed on a variety of organic polymers have been studied by electron spin resonance (ESR), making it possible to provide a sound basis for future experimental design of polymer surface processing, i.e., plasma treatment. On the basis of the findings from such studies, several pharmaceutical applications in the field of drug engineering have been devised, which include preparation of double-compressed tablets for reservoir-type drug delivery system (DDS) of sustained- and delayed-release, and fabrication of functionalized composite powders applicable for matrix-type DDS by a mechanical application of plasma-irradiated polymer powder.",{"EN":80},"Plasma Techniques for Preparation of Controlled Drug Release System",{"VOID":82},"10.1023\u002FA:1013192528882","PUBLICATION","VERIFIED","Auto Verify","http:\u002F\u002Flink.springer.com\u002F10.1023\u002FA:1013192528882",[88,105,117],{"id":89,"sortIndex":19,"researcher":18,"roles":90,"affiliations":92,"properties":102},"8b7dd019-3d65-4241-b643-fb64731b6b23",[91],"AUTHOR",[93],{"id":18,"sortIndex":19,"affiliation":94,"properties":18},{"id":95,"createTime":96,"updateTime":96,"relativeEntities":97,"slug":18,"properties":98,"entityType":101,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"1f80f5f8-abda-4f7b-9da9-8dfb992269ed","2023-12-12T21:44:26.565+00:00",[],{"title":99},{"VI":100},"Laboratory of Pharmaceutical Physical Chemistry, Gifu Pharmaceutical University, Gifu, Japan","AFFILIATION",{"title":103},{"VI":104},"Masayuki Kuzuya",{"id":106,"sortIndex":55,"researcher":18,"roles":107,"affiliations":108,"properties":114},"30aac00c-b881-4487-866d-99313e1d280f",[91],[109],{"id":18,"sortIndex":19,"affiliation":110,"properties":18},{"id":95,"createTime":96,"updateTime":96,"relativeEntities":111,"slug":18,"properties":112,"entityType":101,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},[],{"title":113},{"VI":100},{"title":115},{"VI":116},"Shin-ichi Kondo",{"id":118,"sortIndex":51,"researcher":18,"roles":119,"affiliations":120,"properties":126},"9874c826-bb0d-4a04-aa24-a2bab1976c24",[91],[121],{"id":18,"sortIndex":19,"affiliation":122,"properties":18},{"id":95,"createTime":96,"updateTime":96,"relativeEntities":123,"slug":18,"properties":124,"entityType":101,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},[],{"title":125},{"VI":100},{"title":127},{"VI":128},"Yasushi Sasai","ARTICLE",{"url":86,"publisher":131,"properties":150},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":132,"slug":10,"properties":133,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":136,"manageAffiliations":137,"indexDatabases":138,"url":18,"thumbnailPath":18,"statistic":145,"gsStatistic":18,"type":18,"analyzePriority":18},[],{"issn":134,"title":135},{"VOID":13},{"EN":15},[],[],[139],{"id":24,"indexDatabase":140,"url":37,"indexYears":38,"academicFieldIds":18,"indexDatabaseRanking":39},{"id":26,"createTime":27,"updateTime":28,"relativeEntities":141,"label":142,"description":143,"key":34,"publicationTags":144,"standard":18},[],{"EN":31,"VI":31},{"EN":31,"VI":33},[36],{"impactFactor":19,"impactFactorByYear":146,"i10Index":42,"i10IndexLast5Year":19,"totalPublication":43,"totalPublicationByYear":147,"totalCitation":52,"totalCitationByYear":148,"totalCitationPerPublication":58,"totalCitationPerPublicationByYear":149,"hindexLast5Year":42,"hindex":42},{},{"1996":45,"1997":46,"1998":45,"1999":47,"2000":48,"2001":49,"2002":50,"2003":46,"2004":51},{"1996":54,"1997":55,"1998":56,"2004":57},{"1996":60,"1997":61,"1998":62,"2004":63},{"volume":151,"pages":153},{"VOID":152},"6",{"VOID":154},"145-162","2001-09-01",2001,false,{"id":159,"createTime":160,"updateTime":161,"relativeEntities":162,"slug":163,"properties":164,"entityType":83,"verifyStatus":84,"verifyTime":161,"verifyNote":85,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":55,"primaryUrl":173,"fullTextUrl":18,"authors":174,"publicationType":129,"publisherRelationship":255,"citationCount":18,"citationInfo":18,"publishDate":280,"publishYear":281,"citationAnalyzeStatus":17,"lastCitationAnalyze":18,"indexDatabases":18,"openAccess":18,"references":18,"isForceReanalyzing":157},"64913e90-91c4-4596-9163-017792a887e2","2023-12-24T21:25:30.446+00:00","2024-12-28T23:58:35.630+00:00",[],"Influence-of-Vapor-Phase-Pretreatments-of-Epoxy-Surfaces-on-the-Nucleation-of-MOCVD-Copper-Thin-Films",{"references":165,"abstract":167,"title":169,"doi":171},{"VOID":166},"H. A. Marzouk, J. Y. Kim, J. S. Kim, P. J. Reucroft, R. J. Jacob, J. D. Robertson, and C. Eloi, Thin Solid Films, 249, 22 (1994).\nR. Izquierdo, J. Bertomeu, M. Suys, E. Sacher, and M. Meunier, Appl. Surf. Sci., 86, 509 (1995).\nM. J. Hampden-Smith, T. T. Kodas, and R. R. Rye, Adv. Mater., 4, 524 (1992).\nT.-Y. Chen, C. Combellas, P. Doppelt, F. Kanoufi, and A. Thiebault, Chem. Vapor Deposition, 5, 185 (1999).\nM. L. H. ter Heerdt, P. J. Van der Put, A. Goossens, A. D. Kuijpers, and J. Schoonman, Electrochem. Soc. Proc., 97-25, 1524 (1997).\nN. L. Jeon and R. G. Nuzzo, Langmuir, 11, 341 (1995).\nS. Vidal, F. Maury, A. Gleizes, T.-Y. Chen, and P. Doppelt, J. Physique IV, 9, 791 (1999).\nS. Vidal, F. Maury, A. Gleizes, and C. Mijoule, Appl. Surf. Sci., in press.\nT. H. Baum, P. Doppelt, J. E. Varsik, and C. M. Reidsema, Electrochem. Soc. Proc., 94-31, 320 (1994).\nJ. M. Burkstrand, Appl. Phys. Lett., 33, 387 (1978).\nR. K. Wells, J. P. S. Badyal, I. W. Drummond, K. S. Robinson, and F. J. Street, Polymer, 34, 3611 (1993).\nL. H. Dubois and B. R. Zegarski, J. Electrochem. Soc., 139, 3295 (1992).\nA. M. Braun, M.-T. Maurette, and E. Oliveros, Technologie Photochimique, Presses Polytechniques Romandes, Lausanne (1986).\nJ. F. Rabek, Photodegradation of Polymers, Springer, (1996).\nJ. M. Hill, E. Karbashewski, A. Lin, M. Strobel, and M. J. Walzak, J. Adhesion Sci. Technol., 9, 1575 (1995).\nW. L. Wade, Jr., R. J. Mammone, and M. Binder, J. Appl. Polymer Sci., 43, 1589 (1991).\nS. Abisset, F. Maury, R. Feurer, M. Ducarroir, M. Nadal, and M. Andrieux, Thin Solid Films, 315, 179 (1998).\nH. Guezenoc, Y. Segui, S. Thery, and K. Asfardjani, J. Adhesion Sci. Technol., 7, 953 (1993).\nM. Murahara and M. Okoshi, J. Adhesion Sci. Technol., 9, 1593 (1995).\nS.-G. Hong, Polymer Degradation and Stability, 48, 211 (1995).\nF. Kokai, H. Saito, and T. Fujioka, J. Appl. Phys., 66, 3252 (1989).\nA. G. Shard and J. P. S. Badyal, J. Phys. Chem., 95, 9436 (1991).\nR. D. Boyd and J. P. S. Badyal, Macromolecules, 30, 3658 (1997).\nE. T. Kang, K. G. Neoh, X. Zhang, K. L. Tan, and D. J. Liaw, Surface Interface Analysis, 24, 51 (1996).\nC.-W. Lin, J. Mater. Sci. Lett., 12, 612 (1993).\nF. Maury, S. Vidal, and A. Gleizes, Adv. Mater. Optics Electronics, in press.",{"EN":168},"Vapor phase pretreatments of epoxy composite material reinforced with carbon fibers were carried out prior to the growth of Cu thin films by metal-organic chemical vapor deposition (MOCVD) using Cu (hfa)(COD) as copper precursor. These dry surface oxidation processes include H2O\u002FUV, O2\u002FUV and O2\u002FPlasma treatments. Oxygen plasma method is the most efficient to oxidize the surface and it has the greatest effect to improve the wettability of epoxy samples. As a consequence, the higher hydrophilicity of the plasma-modified epoxy surface induces a higher nucleation density in the Cu film. Furthermore, this treatment reduces drastically the induction period observed for the growth of the metal. Even though the O2\u002FUV pretreatment incorporates almost the same amount of oxygen in the epoxy surface than the plasma treatment, the functional groups are different, as revealed by XPS analyses, and the surface is less hydrophilic. Correlations between oxidation, wettability and nucleation density of the Cu films are discussed.",{"EN":170},"Influence of Vapor Phase Pretreatments of Epoxy Surfaces on the Nucleation of MOCVD Copper Thin Films",{"VOID":172},"10.1023\u002FA:1009560413046","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1023\u002FA:1009560413046",[175,190,206,218,230,242],{"id":176,"sortIndex":51,"researcher":18,"roles":177,"affiliations":178,"properties":187},"ddf140ec-2446-4411-9010-bbd064f0643c",[91],[179],{"id":18,"sortIndex":19,"affiliation":180,"properties":18},{"id":181,"createTime":182,"updateTime":182,"relativeEntities":183,"slug":18,"properties":184,"entityType":101,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"e63d0e97-9edf-427f-a64d-0e3e62549913","2023-12-24T21:25:30.475+00:00",[],{"title":185},{"VI":186},"Ecole Nationale Supérieure de Chimie, Centre Interuniversitaire de Recherche et d'Ingénierie des Matériaux, UMR CNRS 5085, Toulouse cedex 4, France",{"title":188},{"VI":189},"A. Gleizes",{"id":191,"sortIndex":192,"researcher":18,"roles":193,"affiliations":194,"properties":203},"f22deaf6-e583-456b-b368-3f9fc8e21445",4,[91],[195],{"id":18,"sortIndex":19,"affiliation":196,"properties":18},{"id":197,"createTime":198,"updateTime":198,"relativeEntities":199,"slug":18,"properties":200,"entityType":101,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"ec597102-6d70-4523-93c0-5ca59cea9394","2023-12-24T21:25:30.500+00:00",[],{"title":201},{"VI":202},"Laboratoire de Génie Electrique, UMR CNRS 5003, Toulouse cedex 4, France",{"title":204},{"VI":205},"N. Lacombe",{"id":207,"sortIndex":42,"researcher":18,"roles":208,"affiliations":209,"properties":215},"3d638a6b-41d8-4466-8b1f-b935524c8609",[91],[210],{"id":18,"sortIndex":19,"affiliation":211,"properties":18},{"id":197,"createTime":198,"updateTime":198,"relativeEntities":212,"slug":18,"properties":213,"entityType":101,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},[],{"title":214},{"VI":202},{"title":216},{"VI":217},"P. Raynaud",{"id":219,"sortIndex":19,"researcher":18,"roles":220,"affiliations":221,"properties":227},"3fa75815-e031-4cce-a753-186170fb4035",[91],[222],{"id":18,"sortIndex":19,"affiliation":223,"properties":18},{"id":181,"createTime":182,"updateTime":182,"relativeEntities":224,"slug":18,"properties":225,"entityType":101,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},[],{"title":226},{"VI":186},{"title":228},{"VI":229},"S. Vidal",{"id":231,"sortIndex":55,"researcher":18,"roles":232,"affiliations":233,"properties":239},"b358c5d3-3cb5-47c5-acbc-0b46879b1925",[91],[234],{"id":18,"sortIndex":19,"affiliation":235,"properties":18},{"id":181,"createTime":182,"updateTime":182,"relativeEntities":236,"slug":18,"properties":237,"entityType":101,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},[],{"title":238},{"VI":186},{"title":240},{"VI":241},"F. Maury",{"id":243,"sortIndex":244,"researcher":18,"roles":245,"affiliations":246,"properties":252},"a59e004c-4f99-4b5c-90a4-2ddbb477a18f",3,[91],[247],{"id":18,"sortIndex":19,"affiliation":248,"properties":18},{"id":197,"createTime":198,"updateTime":198,"relativeEntities":249,"slug":18,"properties":250,"entityType":101,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},[],{"title":251},{"VI":202},{"title":253},{"VI":254},"Y. Segui",{"url":173,"publisher":256,"properties":275},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":257,"slug":10,"properties":258,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":261,"manageAffiliations":262,"indexDatabases":263,"url":18,"thumbnailPath":18,"statistic":270,"gsStatistic":18,"type":18,"analyzePriority":18},[],{"issn":259,"title":260},{"VOID":13},{"EN":15},[],[],[264],{"id":24,"indexDatabase":265,"url":37,"indexYears":38,"academicFieldIds":18,"indexDatabaseRanking":39},{"id":26,"createTime":27,"updateTime":28,"relativeEntities":266,"label":267,"description":268,"key":34,"publicationTags":269,"standard":18},[],{"EN":31,"VI":31},{"EN":31,"VI":33},[36],{"impactFactor":19,"impactFactorByYear":271,"i10Index":42,"i10IndexLast5Year":19,"totalPublication":43,"totalPublicationByYear":272,"totalCitation":52,"totalCitationByYear":273,"totalCitationPerPublication":58,"totalCitationPerPublicationByYear":274,"hindexLast5Year":42,"hindex":42},{},{"1996":45,"1997":46,"1998":45,"1999":47,"2000":48,"2001":49,"2002":50,"2003":46,"2004":51},{"1996":54,"1997":55,"1998":56,"2004":57},{"1996":60,"1997":61,"1998":62,"2004":63},{"volume":276,"pages":278},{"VOID":277},"5",{"VOID":279},"15-29","2000-03-01",2000,{"id":283,"createTime":284,"updateTime":285,"relativeEntities":286,"slug":287,"properties":288,"entityType":83,"verifyStatus":84,"verifyTime":285,"verifyNote":85,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19,"primaryUrl":297,"fullTextUrl":18,"authors":298,"publicationType":129,"publisherRelationship":350,"citationCount":18,"citationInfo":18,"publishDate":375,"publishYear":376,"citationAnalyzeStatus":17,"lastCitationAnalyze":18,"indexDatabases":18,"openAccess":18,"references":18,"isForceReanalyzing":157},"db132c22-2387-4150-b258-4817b61331d8","2023-12-07T12:42:12.528+00:00","2025-02-21T23:56:22.783+00:00",[],"Behavior-of-Plasma-Treated-Elastomeric-Polydimethylsiloxane-Coatings-in-Aqueous-Environment",{"references":289,"abstract":291,"title":293,"doi":295},{"VOID":290},"J. L. Fritz and M. J. Owen, J. Adhesion 54, 33 (1995).\nM. J. Owen and P. J. Smith, J. Adhesion Sci. Technol. 8, 1063 (1994).\nE. P. Everaert, H. C. van der Mei, J. de Vries, and H. J. Busscher, J. Adhesion Sci. Technol. 9, 1263 (1995).\nM. Morra, E. Occhiello, R. Marola, F. Garbassi, P. Humphrey and D. Johnson, J. Colloid Interface Sci. 137, 11 (1990).\nJ. D. Andrade, Med. Instrum. 7, 110 (1973).\nA. Toth, I. Bertoti, M. Blazso, G. Banhegyi, A. Bognar, and P. Szaplonczay, J. Appl. Polym. Sci. 52, 1293 (1994).\nR. F. Boyer, Rubber Chem. Technol. 36, 1324 (1963).\nJ. J. Kennan, Y. A. Peters, D. E. Swarthout, M. J. Owen, A. Namkanisorn, and M. K. Chaudhury, J. Biomed. Mater. Res. 36, 487 (1997).\nC. Batich, D. DePalma, J. Marotta, G. Latorre, and N. S. Hardt, in Immunology of Silicones, M. Potter and N. R. Rose (eds.), Springer-Verlag, New York, (1996) p. 13.\nM. C. Philips and A. C. Riddiford, J. Colloid Interface Sic. 41, 77 (1972).\nM. J. Owen, Ind. Eng. Chem., Prod. Res. Dev. 19, 97 (1980).\nW. Noll, H. Steinbach, and C. Scuker, Prog. Colloid Polym. Sci. 55, 131 (1971).\nH. Steinbach and C. Sucker, Colloid Polym. Sci. 255, 452 (1977).\nU. W. Gedde, A. Hellebuych and M. Hedenqvist, Polym. Eng. Sci. 36, 2077 (1996).",{"EN":292},"Plasma treatment is a useful way of enhancing the wettability of polydimethylsiloxane (PDMS). The subsequent recovery of hydrophobicity in air once treatment is discontinued is well known, but less has been reported about the effect of the storage environment. Water storage is the most relevant, with some reports that this stops the hydrophobic recovery of plasma-treated Medical Grade PDMS elastomer. This is not our experience with a commercial industrial PDMS sealant that had been treated by a helium radio-frequency plasma and stored in pure water and in artificial sea water. Substantial hydrophobic recovery occurs on storage in these environments. The commercial sealant is likely to have more low molecular weight diffusible species and more pre-existing silanol groups than the Medical Grade material. Both of these factors could affect the recovery mechanism by diffusion of untreated polymer chains to the surface or reorientation of polar and non-polar groups in the surface region.",{"EN":294},"Behavior of Plasma-Treated Elastomeric Polydimethylsiloxane Coatings in Aqueous Environment",{"VOID":296},"10.1023\u002FA:1022577816591","http:\u002F\u002Flink.springer.com\u002F10.1023\u002FA:1022577816591",[299,314,326,338],{"id":300,"sortIndex":55,"researcher":18,"roles":301,"affiliations":302,"properties":311},"30eea0e5-a3f7-447a-8fac-081f40a63e8b",[91],[303],{"id":18,"sortIndex":19,"affiliation":304,"properties":18},{"id":305,"createTime":306,"updateTime":306,"relativeEntities":307,"slug":18,"properties":308,"entityType":101,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"da8bd556-5cc1-4367-af0b-331a8e4d81bf","2023-12-07T12:42:12.599+00:00",[],{"title":309},{"VI":310},"Dow Corning Corporation, Midland",{"title":312},{"VI":313},"Jennifer L. 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Using pulsed excitation of the discharge, up to about 90% of the epoxy groups of GMA can be retained in plasma polymers obtainableat deposition rates in the order of 3–5nm\u002Fs. Preliminary investigations of the mechanism of film formation under pulsed plasma conditions indicate that the reaction of intact monomer molecules withsurface radicals generated during the pulses play a prominent role.",{"EN":388},"Surface Functionalization at Atmospheric Pressure by DBD-Based Pulsed Plasma Polymerization",{"VOID":390},"10.1023\u002FA:1009583815474",[392],"EN","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1023\u002FA:1009583815474",[395,413,426,439],{"id":396,"sortIndex":55,"researcher":18,"roles":397,"affiliations":398,"properties":410},"cbbdbc63-258a-4787-9137-916f8d245578",[],[399],{"id":400,"sortIndex":19,"affiliation":401,"properties":18},"5a4b07af-e9c0-4c6a-ba7a-789f82e3651c",{"id":402,"createTime":403,"updateTime":404,"relativeEntities":405,"slug":406,"properties":407,"entityType":101,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"09269a14-a4b7-41bc-8d03-eb841f156e1e","2024-01-14T04:20:28.569+00:00","2025-06-11T22:06:37.529+00:00",[],"Fraunhofer-Institute-for-Surface-Engineering-and-Thin-Films-IST-Braunschweig-Germany",{"title":408},{"VI":409},"Fraunhofer Institute for Surface Engineering and Thin Films (IST), Braunschweig, Germany",{"title":411},{"EN":412},"Katrin Höpfner",{"id":414,"sortIndex":244,"researcher":18,"roles":415,"affiliations":416,"properties":423},"aac67df5-697a-4736-a2e2-13b544800621",[],[417],{"id":418,"sortIndex":19,"affiliation":419,"properties":18},"cb0820c2-b2e8-4165-9e89-f59b515497b9",{"id":402,"createTime":403,"updateTime":404,"relativeEntities":420,"slug":406,"properties":421,"entityType":101,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},[],{"title":422},{"VI":409},{"title":424},{"EN":425},"Rudolf Thyen",{"id":427,"sortIndex":51,"researcher":18,"roles":428,"affiliations":429,"properties":436},"41b60b07-e1a8-42ac-b844-cb6544d40fff",[],[430],{"id":431,"sortIndex":19,"affiliation":432,"properties":18},"29b9e6bb-e59a-4038-b3d0-077ea8f372ac",{"id":402,"createTime":403,"updateTime":404,"relativeEntities":433,"slug":406,"properties":434,"entityType":101,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},[],{"title":435},{"VI":409},{"title":437},{"EN":438},"Niklas Kläke",{"id":440,"sortIndex":19,"researcher":18,"roles":441,"affiliations":442,"properties":449},"342217fb-9320-4741-ac05-dee25339173f",[],[443],{"id":444,"sortIndex":19,"affiliation":445,"properties":18},"5e9ef332-68c2-4232-8dfd-06a10a082b3b",{"id":402,"createTime":403,"updateTime":404,"relativeEntities":446,"slug":406,"properties":447,"entityType":101,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},[],{"title":448},{"VI":409},{"title":450},{"EN":451},"Claus-Peter Klages",{"url":18,"publisher":453,"properties":472},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":454,"slug":10,"properties":455,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":458,"manageAffiliations":459,"indexDatabases":460,"url":18,"thumbnailPath":18,"statistic":467,"gsStatistic":18,"type":18,"analyzePriority":18},[],{"issn":456,"title":457},{"VOID":13},{"EN":15},[],[],[461],{"id":24,"indexDatabase":462,"url":37,"indexYears":38,"academicFieldIds":18,"indexDatabaseRanking":39},{"id":26,"createTime":27,"updateTime":28,"relativeEntities":463,"label":464,"description":465,"key":34,"publicationTags":466,"standard":18},[],{"EN":31,"VI":31},{"EN":31,"VI":33},[36],{"impactFactor":19,"impactFactorByYear":468,"i10Index":42,"i10IndexLast5Year":19,"totalPublication":43,"totalPublicationByYear":469,"totalCitation":52,"totalCitationByYear":470,"totalCitationPerPublication":58,"totalCitationPerPublicationByYear":471,"hindexLast5Year":42,"hindex":42},{},{"1996":45,"1997":46,"1998":45,"1999":47,"2000":48,"2001":49,"2002":50,"2003":46,"2004":51},{"1996":54,"1997":55,"1998":56,"2004":57},{"1996":60,"1997":61,"1998":62,"2004":63},{"volume":473,"pages":474},{"VOID":277},{"VOID":475},"79-89","2000-06-01",[478,480,482,484,486,488,490,492,494,496,498,500,502,504,506,508,510,512,514,516,518],{"id":18,"text":479,"url":18,"identifiers":18},"Y. Uyama, K. Kato, and Y. Ikada, Adv. Polym. Sci. 137, 1 (1998).",{"id":18,"text":481,"url":18,"identifiers":18},"J. P. S. Badyal, in IEE Seminar Plasma Polymerization-Processing for the Future, London, UK, IEE, UK, 1999, 2\u002F1-4. Ref. No. 1999\u002F026.",{"id":18,"text":483,"url":18,"identifiers":18},"C. Oehr, M. Müller, B. Elkin, D. Hegemann, and U. Vohrer, Surf. Coat. Technol. 116-119, 25 (1999).",{"id":18,"text":485,"url":18,"identifiers":18},"K. G. Donohoe and T. Wydeven, in Proceedings of the 4th International Symposium on Plasma Chemistry, Zürich, 1979, p. 765.",{"id":18,"text":487,"url":18,"identifiers":18},"J. Janča and P. Pavelka, Scripta Fac. Sci. Nat. Univ. Purk. Brun. 14, 21 (1984).",{"id":18,"text":489,"url":18,"identifiers":18},"M. Segers and S. K. Dhali, J. Electrochem. Soc. 138, 2741 (1991).",{"id":18,"text":491,"url":18,"identifiers":18},"S. Kanazawa, M. Kogoma, S. Okazaki, and T. Moriwaki, Nucl. Instr. Meth. Phys. Res. B37\u002F38, 842 (1989).",{"id":18,"text":493,"url":18,"identifiers":18},"T. Yokoyama, M. Kogoma, S. Kanazawa, T. Moriwaki, and S. Okazaki, J. Phys. D: Appl. Phys. 23, 374 (1990).",{"id":18,"text":495,"url":18,"identifiers":18},"Y. Sawada, S. Ogawa, and M. Kogoma, J. Phys. D: Appl. Phys. 28, 1661 (1995).",{"id":18,"text":497,"url":18,"identifiers":18},"R. Thyen, A. Weber, and C.-P. Klages, Surf. Coat. Technol. 97, 1197 (1997).",{"id":18,"text":499,"url":18,"identifiers":18},"C.-P. Klages, R. Thyen, and M. Vergöhl, in 196th Meeting of the Electrochemical Society, Hawaii, October 17-22, 1999, invited lecture, Abstract No. 782, to be published.",{"id":18,"text":501,"url":18,"identifiers":18},"R. Schwarz, Ph.D. thesis, Braunschweig Technical University, 1995, Shaker Verlag, Aachen, Germany, 1996.",{"id":18,"text":503,"url":18,"identifiers":18},"U. Reitz, Ph.D. thesis, Braunschweig Technical University, 1992.",{"id":18,"text":505,"url":18,"identifiers":18},"J. Salge, Surf. Coat. Technol. 80, 1 (1996).",{"id":18,"text":507,"url":18,"identifiers":18},"S. Meiners, J. Salge, E. Prinz, and F. Förster, Surf. Coat. Technol. 98, 1121 (1998).",{"id":18,"text":509,"url":18,"identifiers":18},"S. Meiners, Ph.D. thesis, Braunschweig Technical University, 1998, Shaker Verlag, Aachen, Germany, 1999.",{"id":18,"text":511,"url":18,"identifiers":18},"J. M. Pochan, L. J. Gerenser, and J. F. Elman, Polymer 27, 1058 (1986).",{"id":18,"text":513,"url":18,"identifiers":18},"C.-P. Klages, K. Höpfner, N. Kläke, and R. Thyen, in: Society of Vacuum Coaters (SVC), 43rd Annual Technical Conference Proceedings, April 15-20, 2000, Denver, Colorado, Society of Vacuum Coaters, Albuquerque, NM, USA, 2000 (ISSN 0737-5921), pp. 100–106.",{"id":18,"text":515,"url":18,"identifiers":18},"A. M. Goodman, Appl. Opt. 17, 2779 (1978).",{"id":18,"text":517,"url":18,"identifiers":18},"J. Behnisch, F. Mehdorn, A. Holläder, and H. Zimmermann, Surf. Coat. Technol. 98, 875 (1998).",{"id":18,"text":519,"url":18,"identifiers":18},"C. L. Rinsch, X. Chen, V. Panchalingam, R. C. Eberhardt, J.-H. Wang, and R. B. Timmons, Langmuir 12, 2995 (1996).",{"id":521,"createTime":522,"updateTime":523,"relativeEntities":524,"slug":525,"properties":526,"entityType":83,"verifyStatus":84,"verifyTime":523,"verifyNote":85,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19,"primaryUrl":535,"fullTextUrl":18,"authors":536,"publicationType":129,"publisherRelationship":576,"citationCount":18,"citationInfo":18,"publishDate":601,"publishYear":602,"citationAnalyzeStatus":17,"lastCitationAnalyze":18,"indexDatabases":18,"openAccess":18,"references":18,"isForceReanalyzing":157},"e1f1d962-c228-4162-895d-0a1f55833306","2023-12-01T09:52:17.561+00:00","2024-12-15T23:11:00.844+00:00",[],"Plasma-Induced-Graft-Polymerization-of-Poly-ethylene-glycol-Methyl-Ether-Methacrylate-on-Si-100-Surfaces-for-Reduction-in-Protein-Adsorption-and-Platelet-Adhesion",{"references":527,"abstract":529,"title":531,"doi":533},{"VOID":528},"M. Mrksich and G. M. Whitesides, Trends in Biotechnology 13, 228 (1995).\nM. Adami, L. Piras, M. Lanzi, A. Fanigiulo, S. Vakula, and C. Nicolini, Sensors Actuators B 18, 178 (1994).\nD. R. Baselt, G. U. Lee, and R. J. Colten, J. Vac. Sci. Technol. B. 14, 14 (1996).\nH. M. McConnell, J. C. Owicki, J. W. Parce, D. L. Miller, G. T. Baxter, H. G. Wada, and S. Pitchford, Science 257, 1906 (1992).\nA. T. Wooley and R. A. Mathies, Proc. Natl. Acad. Sci. U.S.A. 91, 348 (1994).\nT. A. Horbett, Cardiovas. Pathol. 2, 137 (1993).\nJ. M. Courtney, N. M. K. Lamba, S. Sundaram, and C. D. Forbes, Biomaterials 15, 737 (1994).\nA. S. Hoffman, D. Kiaei, A. Safranj, J. P. Chen, A. Johnston, and T. A. Horbett, Biologically Modified Polymeric Biomaterials Surfaces, E. Piskin, ed., Elsevier Applied Science, London (1992), p. 93.\nJ. M. Harris, Poly(ethylene glycol) Chemistry, Plenum Press, New York (1992).\nY. Uyama, K. Kato, and Y. Ikada, Adv. Polym. Sci. 24, 127 (1998).\nC. Maechling-Strasser, P. Dejardin, J. C. Galin, and A. Schmitt, J. Biomed. Mater. Res. 23, 1385 (1989).\nJ. H. Lee, J. 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Mittal, eds., VSP, Utrecht, The Netherlands (1995), p. 197.\nS. J. Sofia, V. Premnath, and E. U. Merrill, Macromolecules 31, 5059 (1998).\nE. Kulik and Y. Ikada, J. Biomed. Mater. Res. 30, 295 (1996).\nJ. F. Zhang, C. Q. Cui, T. B. Lim, E. T. Kang, K. G. Neoh, S. L. Lim, and K. L. Tan. Chem. Mater. 11, 1061 (1999).\nG. J. Leggett, B. D. Ratner, and J. C. Vickerman, Surf. Interf. Anal. 23, 22 (1995).\nN. Inagaki, S. Tasaka, and T. Inoue, J. Appl. Polym. Sci. 69, 1179 (1998).\nE. T. Kang, K. L. Tan, K. Kato, Y. Uyama, and Y. Ikada, Macromolecules 29, 6872 (1996).\nS. Y. Wu, E. T. Kang, and K. G. Neoh, Macromolecules 32, 186 (1999).\nK. L. Tan, L. L. Woon, H. K. Wong, E. T. Kang, and K. G. Neoh, Macromolecules 29, 2832 (1993).\nZ. H. Vanessa, L. Edvin, F. Jane, S. David, Chem. Mater. 10, 3895 (1998).\nJ. Hermans, J. Chem. Phys. 77, 2193 (1982).\nJ. H. Lee, B. J. Jeng, and H. B. Lee, J. Biomed. Mater. Res. 34, 105 (1997).\nW. Norde, Adv. Colloid. Interf. Sci. 25, 267 (1986).\nR. Kjellander and E. Florin, J. Chem. Soc., Faraday Trans. 77, 2052 (1981).",{"EN":530},"Argon plasma-induced graft polymerization of a solution-coated macromonomer, poly(ethylene glycol) methyl ether methacrylate (PEGMA), on the Si(100) surface was carried out to impart anti-fouling properties to the Si(100) surface. The surface composition and microstructure of the PEGMA graft-polymerized Si(100) surfaces were characterized by X-ray photoelectron spectroscopy (XPS), Fourier-transform infrared spectroscopy (FTIR), and atomic force microscopy (AFM) measurements. The extent of crosslinking in the plasma-graft polymerized PEGMA (pp-PEGMA) was estimated by gel fraction determination. In general, an appropriate RF power of about 15 W and a PEGMA macromonomer concentration of about 1 wt% in the coating solution for plasma polymerization produced a high graft yield of pp-PEGMA on the Si(100) surface (the pp-PEGMA-g-Si surface). The Si(100) surface with a high concentration of the grafted pp-PEGMA was effective in preventing bovine serum albumin (BSA) adsorption and platelet adhesion.",{"EN":532},"Plasma-Induced Graft Polymerization of Poly(ethylene glycol) Methyl Ether Methacrylate on Si(100) Surfaces for Reduction in Protein Adsorption and Platelet Adhesion",{"VOID":534},"10.1023\u002FA:1016243403102","http:\u002F\u002Flink.springer.com\u002F10.1023\u002FA:1016243403102",[537,552,564],{"id":538,"sortIndex":51,"researcher":18,"roles":539,"affiliations":540,"properties":549},"b851fc07-efc5-4012-b2ff-d57f7763c311",[91],[541],{"id":18,"sortIndex":19,"affiliation":542,"properties":18},{"id":543,"createTime":544,"updateTime":544,"relativeEntities":545,"slug":18,"properties":546,"entityType":101,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"96d66b64-993d-463c-8806-6c33fe60a937","2023-12-25T14:36:42.537+00:00",[],{"title":547},{"VI":548},"Department of Chemical Engineering, National University of Singapore, Singapore",{"title":550},{"VI":551},"K. 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