标题: | 具超低缺陷非晶薄膜之太阳能电池 The amorphous thin film solar cell with ultra-low defect state |
作者: | 郭振豪 Kuo, Chen-Hao 余沛慈 Yu, Pei-Chen 显示科技研究所 |
关键字: | 非晶矽;薄膜太阳能电池;超低缺陷;低温制程;高密度电浆化学气相沉积系统;Amorphous silicon;Thin film solar cell;Ultra-low defect state;Low temperature process;High-density plasma chemical vapor deposition system |
公开日期: | 2010 |
摘要: | 此论文介绍我们如何利用高密度电浆化学气相沉积系统,制作非晶矽薄膜太阳能电池。我们会探讨薄膜的沉积、非晶太阳能电池的特性、材料本身的优缺点,也会详细描述我们制作太阳能电池的制程步骤。为了得到一个稳定且高效率的太阳能电池,我们将太阳能电池元件性质最佳化。首先我们从元件的电性去做改良。我们调变掺杂浓度去改变开路电压、再调变吸收层的厚度去改变短路电流以及填充因子,即可获得高效率的非晶太阳能电池。接着我们从材料层面去做改良,藉由降低缺陷密度,我们成功的将短路电流与填充因子更往上提高。又因为压力的提高,我们可以获得较佳的均匀度,目前0.09平方公分面积的太阳能电池原件,我们已经可以稳定做出9.25%的转换效率。除了玻璃基板,我们也将制程整合到可挠式基板上,获得转换效率 4.8%的太阳能电池。 This article introduce that we utilize high density plasma chemical vapor deposition to develop thin film amorphous solar cell. We will discuss about thin film deposition, strengths and weaknesses of material, the characteristic of amorphous thin film solar cell. We will describe the production of solar cell process steps in detail. In order to complete stable and high-efficiency solar cells, we optimize properties of solar cell components. First, we improve the electrical elements. We modulation doping to change the open circuit voltage, and then modulated the thickness of absorbing layer to change short-circuit current and fill factor, to obtain high efficiency amorphous solar cells. Then we do it from the material, improved by reducing the defect density, we succeeded in raising short-circuit current and fill factor. And because the pressure increase, we can obtain better uniformity, Currently 0.09 square centimeter area of the solar cells, conversion efficiency can be stabilized at 9.25%. In addition to glass substrates, we have integrated process into the the polyimide flexible substrate, to obtain the conversion efficiency of 4.8%. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079815526 http://hdl.handle.net/11536/47248 |
显示于类别: | Thesis |