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pro vyhledávání: '"Shao-Yen Chang"'
Autor:
Shao-Yen Chang, 張紹彥
105
In this study, we used polyvinylpyrrolidone (PVP), silver nitrate (AgNO3) and silver nano rod (AgNR) as raw materials to prepare fibrous mats through single/coaxial electrospinning. We also improved the single/co-axial electrospinning device
In this study, we used polyvinylpyrrolidone (PVP), silver nitrate (AgNO3) and silver nano rod (AgNR) as raw materials to prepare fibrous mats through single/coaxial electrospinning. We also improved the single/co-axial electrospinning device
Externí odkaz:
http://ndltd.ncl.edu.tw/handle/pnabut
Autor:
Shao-Yen Chang, 張少彥
101
Six sigma brings impressive performance to a lot of world-class enterprises. GE and Motorola turned over a new leaf by adopting 6 sigma. Their stories have been widely spread among global business. Basically, 6 sigma is to perfectly meet cus
Six sigma brings impressive performance to a lot of world-class enterprises. GE and Motorola turned over a new leaf by adopting 6 sigma. Their stories have been widely spread among global business. Basically, 6 sigma is to perfectly meet cus
Externí odkaz:
http://ndltd.ncl.edu.tw/handle/8828wr
Publikováno v:
RSC Advances. 7:16139-16148
Networks of metal nanowires (NWs) have the highest performance of any solution-coatable material to replace expensive indium tin oxide (ITO) as the transparent conducting electrode material in next-generation devices. However, there is as yet no publ
Autor:
Chang-Mou Wu, Tai-Chin Chiang, Molla Bahiru Gebeyehu, Angaw Kelemework Abay, Jiunn-Yih Lee, Yu-Hao Chang, Shao-Yen Chang, Ri-Ichi Murakami
Publikováno v:
RSC Advances. 6:54162-54168
In the present study, continuous and uniform core–shell silver nanofiber/poly(vinyl) pyrrolidone (AgNF/PVP) nanofibers have been successfully fabricated via an efficient coaxial-spinneret electrospinning method with a vertical configuration using P
Publikováno v:
ECS Meeting Abstracts. :2067-2067
Networks of metal NWs have the highest performance of any solution-coatable to replace expensive indium tin oxide (ITO) as the transparent conducting electrode material in next generation devices. However, there is as yet no published process for pro