The effects of surface potential on surface recombination and the performance of silicon solar cells

R. J. Schwartz, J. Bouknight, M. S. Worley
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引用次数: 5

Abstract

This paper describes the effect on the short circuit current of varying the surface potential of the illuminated surface of an Interdigitated Back Contact solar cell. The surface potential of the IBC cell is controlled by means of a transparent conducting field plate. The application of a suitable potential to the conducting layer can modulate the surface potential from strong accumulation through depletion to strong inversion. The results of this experiment are explained in terms of the effects of the varying surface potential on surface recombination and the depletion layer recombination, which occurs in the case of an inverted surface. The results of computer calculations are also presented. A comparison of the relative merits of the Front Surface Field cell, the Interdigitated Back Contact cell, and the Tandem cell is made based on the experimental and theoretical results presented.
表面电位对硅太阳电池表面复合及性能的影响
本文研究了改变交叉背接触太阳能电池照射表面电位对短路电流的影响。IBC电池的表面电位是通过透明的导电场板来控制的。在导电层上施加合适的电势,可以将表面电势从强积累到耗尽转变为强反转。实验结果解释了表面电位变化对表面复合和损耗层复合的影响,而损耗层复合发生在倒表面的情况下。并给出了计算机计算结果。在实验和理论结果的基础上,比较了前表面场电池、插指式后接触电池和串联电池的相对优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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