Relating photovoltaic output and spectral response of amorphous, polycrystalline, ribbon, epitaxial and single-crystal MIS solar cells

S. Dey, W. A. Anderson, A. Delahoy, C. Cartier
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Abstract

Spectral response and diffusion length characteristics of the various MIS cells developed at Rutgers and previously reported in the literature have been investigated. The cells, designated according to the type of Si substrate used, appear in the following descending order based on the above studies: (1) Monsanto single-crystal Si with a peak quantum efficiency (Q.E.) of 87.4% and a diffusion length (Ln) of 70 µm, (2) Wacker polycrystalline Si, peak Q.E. = 82.8%, Ln= 60 µm, (3) IBM ribbon Si, (4) Epitaxial Si, (5) Mobil-Tyco EFG ribbon Si and (6) amorphous Si. The Q.E. of the Monsanto Si base-line cell is shown to be adequately explained in terms of the wavelength dependence of the collection efficiency and the transmittance of the barrier metal. Good agreement is also shown between theoretical and experimental plots of short-circuit current density (Jsc) versus Ln. The Wacker cell shows best short wavelength response of all the cells studied including a commercial p-n cell having a peak Q.E. of 100% and Ln= 184 µm.
有关非晶、多晶、带状、外延和单晶MIS太阳能电池的光伏输出和光谱响应
我们对罗格斯大学开发的各种MIS细胞的光谱响应和扩散长度特性进行了研究,这些细胞之前在文献中有过报道。根据所使用的硅衬底类型,根据上述研究,按降序排列:(1)孟山都单晶硅,峰值量子效率(q.e)为87.4%,扩散长度(Ln)为70µm;(2)瓦克多晶硅,峰值q.e = 82.8%, Ln= 60µm; (3) IBM带状硅,(4)外延硅,(5)mobile - tyco EFG带状硅和(6)非晶硅。孟山都硅基电池的qe.e.可以用波长依赖性的收集效率和屏障金属的透射率来充分解释。短路电流密度(Jsc)随Ln变化的理论图与实验图吻合较好。Wacker电池在所有被研究的电池中表现出最好的短波响应,包括商用p-n电池,其峰值q.e为100%,Ln= 184µm。
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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