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Estimation of minority carrier diffusion lengths in InP/GaAs solar cells

机译:InP / GaAs太阳能电池中少数载流子扩散长度的估计

摘要

Minority carrier diffusion length is one of the most important parameters affecting the solar cell performance. An attempt is made to estimate the minority carrier diffusion lengths is the emitter and base of InP/GaAs heteroepitaxial solar cells. The PC-1D computer model was used to simulate the experimental cell results measured at NASA Lewis under AMO (air mass zero) spectrum at 25 C. A 16 nm hole diffusion length in the emitter and a 0.42 micron electron diffusion length in the base gave very good agreement with the I-V curve. The effect of varying minority carrier diffusion lengths on cell short current, open circuit voltage, and efficiency was studied. It is also observed that the front surface recombination velocity has very little influence on the cell performance. The poor output of heteroepitaxial cells is caused primarily by the large number of dislocations generated at the interfaces that propagate through the bulk indium phosphide layers. Cell efficiency as a function of dislocation density was calculated and the effect of improved emitter bulk properties on cell efficiency is presented. It is found that cells with over 16 percent efficiencies should be possible, provided the dislocation density is below 10(exp 6)/sq cm.
机译:少数载流子扩散长度是影响太阳能电池性能的最重要参数之一。试图估计少数载流子扩散长度是InP / GaAs异质外延太阳能电池的发射极和基极。使用PC-1D计算机模型来模拟在NASA Lewis在25℃的AMO(空气质量为零)光谱下测得的实验电池结果。发射器中16纳米的空穴扩散长度和基体中0.42微米电子扩散长度与IV曲线非常吻合。研究了改变少数载流子扩散长度对电池短路电流,开路电压和效率的影响。还观察到前表面复合速度对电池性能几乎没有影响。异质外延电池的不良输出主要是由于在通过本体磷化铟层传播的界面处产生的大量位错引起的。计算了作为位错密度的函数的电池效率,并提出了改进的发射极体积特性对电池效率的影响。已经发现,如果位错密度低于10(exp 6)/ sq cm,则具有超过16%的效率的电池应该是可能的。

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    Jain R. K.; Flood D. J.;

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  • 年度 1990
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