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13篇 您的检索式:作者名="NOGI MASAYA"
    题名 作者 年代 出处 被引量
1Fabrication of Silver Nanowire Transparent Electrodes at Room Temperature显示文摘poly 绝缘包围的银 nanowires (AgNWs )(vinylpyrrolidone ) 被一个 polyol 过程综合了并且采用了同样透明的电极。AgNW 透明电极能被热处理在大约 200 点制作吗??Takehiro Tokuno Masaya Nogi Makoto Karakawa Jinting Jiu Thi Thi Nge Yoshio Aso Katsuaki Suganuma 2011Nano Research2011,4,12:38
2Low haze transparent electrodes and highly conducting air dried films with ultra-long silver nanowires synthesized by one-step polyol method显示文摘Teppei Araki Jinting Jiu Masaya Nogi Hirotaka Koga Shijo Nagao Tohru Sugahara Katsuaki Suganuma 2014Nano Research2014,7,2:20
3Silver Nanowire Electrodes: Conductivity Improvement Without Post-treatment and Application in Capacitive Pressure Sensors显示文摘Transparent electrode based on silver nanowires(Ag NWs) emerges as an outstanding alternative of indium tin oxide film especially for flexible electronics. However, the conductivity of Ag NWs transparent electrode is still dramatically limited by the contact resistance between nanowires at high transmittance. Polyvinylpyrrolidone(PVP) layer adsorbed on the nanowire surface acts as an electrically insulating barrier at wire–wire junctions, and some devastating post-treatment methods are proposed to reduce or eliminate PVP layer, which usually limit the application of the substrates susceptible to heat or pressure and burden the fabrication with high-cost, time-consuming, or inefficient processes. In this work, a simple and rapid pre-treatment washing method was proposed to reduce the thickness of PVP layer from 13.19 to0.96 nm and improve the contact between wires. Ag NW electrodes with sheet resistances of 15.6 and 204 X sq-1have been achieved at transmittances of 90 and 97.5 %, respectively. This method avoided any post-treatments and popularized the application of high-performance Ag NW transparent electrode on more substrates. The improved Ag NWs were successfully employed in a capacitive pressure sensor with high transparency, sensitivity, and reproducibility.Jun Wang Jinting Jiu Teppei Araki Masaya Nogi Tohru Sugahara Shijo Nagao Hirotaka Koga Peng He Katsuaki Suganuma 2015Nano-Micro Letters2015,7,1:9
4Effects of deligni- fication in the production of plant-based cellulose nanofibers for op- tically transparent nanocomposites 显示文摘Okahisa Yoko Kentaro Abe Masaya Nogi 2011Composites Science and Technology2011,71,10:1
5Optically transparent nanofibm' sheets by deposition of transparent materials : A concept for a roll - to - roll processing显示文摘Nogi Masaya Yano Hiroyuki 2009Applied Pllysies Letters2009,94,23:1
6Optically Transparent Nanofiber Paper 显示文摘Nogi Masaya lwamoto Shinichiro Nakagaito Anlonio Norio el al 2009Advanced Materials2009,21,16:1
7Fibrillation of dried chitin into 10-20 nm nanofibers by a simple grinding method under acidic conditions 显示文摘Shinsuke lfuku Masaya Nogi Masafumi Yoshioka 2010Carbohydrate Polymers2010,8,1:1
8Transparent Electrodes Fabricated via the Self-Assembly of Silver Nanowires Using a Bubble Template 显示文摘Takehiro Tokuno Masaya Nogi Jinting Jiu Tohru Sug- ahara and Katsuaki Suganuma 2012Langmuir2012,28,92:1
9Strongly adhesive and flexi- ble transparent silver nanowire conductive films fabricated with a high intensity pulsed light technique 显示文摘Jinting Jiu Masaya Nogi Tohru Sugahara Takehiro Tokuno Teppei Araki Natsuki Komoda Katsuaki Suganuma Hiroshi Uchida Kenji Shinozaki 2012Journal of Materials Chemistry2012,22,23:1
10Microstructure and mechanical properties of bacterial cellulose/chitosan porous scaffold显示文摘Thi Thi Nge Masaya Nogi Hiroyuki Yano Junji Sugiyama 2010Cellulose2010,,2:1
11Microstructure and mechanical properties of bacterial cellulose/chitosan porous scaffold显示文摘Thi Thi Nge Masaya Nogi Hiroyuki Yano Junji Sugiyama 2010Cellulose2010,,2:1
12Eichhom optimization of the mechanical performance of bacterial cellulose/poly( 1- lactic) acid composites 显示文摘QUERO FRANCK NOGI MASAYA YANO HIROYUKI K 2010ACS Applied Materials & Interfaces2010,2,1:1
13Reat treatment:choosing the heating time and temperature显示文摘MASAYA NOGI HIROYUKI YAMAMOTO TAKAHI OKUYAMA 2003J Wood Sci2003,49,1:1
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