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首页> 外文期刊>Journal of Computational Electronics >Effect of the front surface field (a-Si:H) on the spectral response of thin films heterojunctions solar cells
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Effect of the front surface field (a-Si:H) on the spectral response of thin films heterojunctions solar cells

机译:前表面场(a-Si:H)对薄膜异质结太阳能电池光谱响应的影响

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摘要

The present paper accounts for a simulation study carried out to determine and optimize the effect of the high-low junction emitter front surface field (FSF) of thin heterojunction solar cell n(+)(a-Si:H)(SiGe)/p(Si)). A theoretical model describing the behavior of heterojunction n(+)-n-p type solar cells has been proposed. Besides, the expression of the photovoltaic equations allowing for the obtention of the optimal quantum efficiency of the solar cells based on the suggested model has been given. The effects of the a-Si: H-layer thickness and Ge fraction are discussed, using the computed results. The main role of an FSF layer is to reduce the effect of front surface recombination and the enhancement of light-generated free carriers' collection. This is primarily responsible for the increase of the spectral response compared with the conventional solar cell. This is achieved by the drastic reduction of the effective recombination at the emitter upper boundary and the optimum value of n+ layer thicknesses (a-Si:H) is about 2 nm.
机译:本文说明了为确定和优化薄异质结太阳能电池n(+)(a-Si:H)/ n(SiGe)高低结发射极前表面场(FSF)的影响而进行的仿真研究/ p(Si))。提出了描述异质结n(+)-n-p型太阳能电池行为的理论模型。此外,基于所建议的模型,给出了光伏方程的表达式,该表达式允许获得太阳能电池的最佳量子效率。利用计算结果讨论了非晶硅:氢层厚度和锗分数的影响。 FSF层的主要作用是减少前表面重组的影响并增强光生自由载流子的收集。与常规太阳能电池相比,这主要是导致光谱响应的增加。这是通过大幅减少发射极上边界处的有效复合以及n +层厚度(a-Si:H)的最佳值约为2 nm来实现的。

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