晶体硅太阳能电池的金属化研究进展

A. Ebong, N. Chen
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引用次数: 29

摘要

金属化在太阳能电池的性能中起着光学和电学两方面的作用。在光学上,网格线的宽度有助于遮光,从而影响短路电流。并且电中通过接触电阻和栅极线电阻串联,从而影响填充系数。在太阳能电池的制造中,金属化是太阳能电池制造中第二昂贵的步骤。本文综述了晶体硅太阳能电池的触点形成,从光刻触点开始,光刻触点在其他半导体器件中是精确和常见的,但价格昂贵且不可制造,然后是丝网印刷和更便宜的替代品。为了降低光伏发电的成本,强调了通过使用更少的金属而采用更便宜的接触技术的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Metallization of crystalline silicon solar cells: A review
Metallization plays both optical and electrical roles in the performance of a solar cell. Optically, the gridline width contributes to shading, which impacts the short circuit current. And electrically in the series resistance through contact and grid line resistances, which influences the fill factor. In the manufacturing of solar cell, metallization is the second most expensive step in the fabrication of a solar cell. In this paper contact formation to crystalline silicon solar cell is reviewed It starts with the photolithography contacts, which is precise and common to other semiconductor devices but expensive and non-manufacturable, to screen-printed and the alternatives that are less expensive. The importance of less expensive contacting technologies through use of less metal is stressed with the view to decreasing the cost of photovoltaic electricity.
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