标题: 电浆技术合成电子元件于软性基板之附着性研究
The Study of The Adhesion between Flexible Substrates and Devices through Plasma
作者: 蔡娟娟
Chuang-Chuang, Tsai
国立交通大学光电工程研究所
公开日期: 2009
摘要: 近年来,台湾软性电子产业链提前策划台湾软性电子产业发展的新布局,积极开发下世代软性电子产品,然而如何于软性基板如不锈钢与PET等制造高附着性及高光电特性之透明导电膜以提供可挠性显示器、太阳能电池、软性感测器的透明电极(TCO)使用,已是目前太阳光电产业迫切需要解决的问题。
本计画将拟与核能研究所(INER)共同合作研究,运用INER电浆镀膜技术于玻璃及不锈钢薄片等基板上所开发之透明导电膜如掺锡氧化铟(ITO)、氧化锌(ZnO)、或掺铝氧化锌(AZO)等,进行透明导电膜与基材间之附着性探讨,并进一步利用本实验室之PECVD设备于INER所提供之透明导电膜基板合成太阳光吸收膜如非晶矽(a-Si:H)或微晶矽(-Si:H)或pin-single junction太阳能电池,以探讨不同textured结构之透明导电膜对太阳光吸收膜之导电性、光反射率等光电特性(或 pin-single junction太阳能电池光电转换效率)之影响,最后再与目前品质等级最高之Asahi-U玻璃基板合成太阳光吸收膜或太阳能电池特性相互比较,以评估INER之玻璃及不锈钢基板之透明导电膜工业应用潜力,并获得最佳光电特性透明导电膜之textured结构。
In recent years, the development of soft electronics including displays, solar cells, flexible detectors has attracted much attention. Soft electronics often require growing Transparent Conducting Oxide (TCO) films on flexible substrates. To grow good devices on such TCO-covered stainless steel substrates with good adhesion and high optical and electrical quality is one of the key issues for the flexible thin-film solar cell applications.
We will collaborate with the Institute of Nuclear Energy Research (INER) and use plasma technique to deposit different transparent conductive oxides on flexible stainless steel foils. Then, we will employ our PECVD equipment to grow amorphous silicon (a-Si:H) and microcrystalline silicon (-Si:H) films on such TCO-covered flexible substrates. By varying the TCO materials, process conditions, and texturing on flexible substrates, we plan to study their effect on the silicon thin films in terms of their optical, adhesion and electrical properties for the solar cell application. Further we will also compare and contrast with the results using TCO glass or the Asahi-U substrates in order to optimize the textured-TCO deposition. The potential of the textured-TCO films prepared at the INER on glass and stainless steel substrates for the solar energy industrial application will be evaluated.
官方说明文件#: 982001INER026
URI: http://hdl.handle.net/11536/100834
https://www.grb.gov.tw/search/planDetail?id=1824302&docId=304107
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