标题: | 光电转换薄膜优化处理制程及光电转换效能提升之研究 Optimization of the Optical-electrical Thin Film for Solar Cell Application |
作者: | 蔡娟娟 Chuang-Chuang Tsai 国立交通大学光电工程研究所 |
关键字: | 氢化非晶矽锗薄膜太阳能电池;不锈钢基板;掺铝氧化锌;hydrogenated amorphous silicon germanium thin-film solar cells;stainless steel substrate;aluminum-doped zinc oxides |
公开日期: | 2011 |
摘要: | 行政院在2005年召开会议,探讨软性电子的发展,期望在2015年我国软性电子产值占全球市场20%,并能产生15家以软性电子产品为主的公司,分布在基板、材料、设备、元件系统、应用服务等五个领域。在2006年则拟定产业技术整合策略及行动方案,建立产、学、研共同研发平台,引进国外专家与人才,掌握上游基础材料与智权;突破过去以制造为主之发展模式,进行垂直整合带动相关材料、设备与量测技术之发展,建构完整产业链。软性电子中目前以塑胶基板和可挠式不锈钢基板最为常见,然而塑胶基板在制程上有温度的限制及元件稳定性等问题;相较之下可挠式不锈钢基板耐热性高适用于Roll-to-Roll制程,更有利于推广至商业化产品上。加上近年太阳能源备受瞩目,因此如何制备适用于薄膜太阳能电池之具光滞留绒面结构之可挠式不锈钢基板,已成为国内目前太阳光电产业所需要解决的问题。 本计画将拟与核能研究所(INER)共同合作研究,运用INER电浆镀膜技术于不锈钢薄片基板上所开发具光滞留绒面结构之掺铝氧化锌(AZO),结合交大现有PECVD制作氢化非晶矽锗薄膜太阳能电池沉积技术,以探讨不同绒面结构(textured)之不锈钢基板的反射率及应用于矽锗太阳能电池之电池转换效率等光电特性影响,最后再与核研所具绒面结构之TCO玻璃基板合成太阳能电池之特性相互比较,以评估INER之textured TCO不锈钢基板,应用于国内绿色产业的潜力,并开发出最佳的textured TCO不锈钢基板,以期将技术导入国内产业提升竞争力。 In 2005, the Exective Yuan of the Republic of China convened a conference, which was related to the developments of flexible electronics. The flexible electronics industry is expected to occupy 20% global market and promote 15 companies, distributing over 5 fields such as substrate, materials, equipment, device system, applied services. In 2006, the government drafted an industrial strategy and a plan to build the panel for cooperation research, to induce masters and scientists. In Addition, the industry must dominate the upper streams and patents to establish completed industrial chain. In common, the plastic substrates and stainless steel substrates are all applied in flexible electronics. However, there are two key problems such as process temperature and stability in the devices based on plastic substrates. On the contrary, the stainless steel substrates are more suitable for flexible electronics and proper to Roll-to-Roll process. In recent years, to grow good devices on such TCO-covered stainless steel substrates with 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 develop TCO flexible stainless steel substrates. Then, we will integrate our thin-film deposition technology to grow hydrogenated amorphous silicon germanium alloys (a-Si1-xGex:H) on TCO-covered flexible substrates. By varying the process conditions, and texturing on flexible substrates, we plan to study their effect on the silicon thin films in terms of their optical, and electrical properties for the solar cell application. Further we will also compare and contrast with the results using TCO-covered flexible stainless steel, TCO glass substrates in order to optimize the textured-TCO deposition. The potential of the textured-TCO films prepared at the INER on stainless steel substrates for the solar energy industrial application will be evaluated. |
官方说明文件#: | 1002001INER040 |
URI: | http://hdl.handle.net/11536/99601 https://www.grb.gov.tw/search/planDetail?id=2191211&docId=349962 |
显示于类别: | Research Plans |