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Strategies to increase CdTe solar-cell voltage

机译:提高CdTe太阳能电池电压的策略

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There is a significant difference in performance between today's highest efficiency of CdTe solar cells and single-crystal cells of comparable band gap. The largest contribution to this difference is the voltage, where the values for the best CdTe cells are about 230 mV below the best GaAs cells when an appropriate adjustment is made for band gap. CdTe voltage and fill-factor are currently compromised by low recombination lifetime (near 1 ns), low hole density (near 10~(14)cm~(-3)), and in some cases an excessive back-contact barrier. Numerical simulation is used to evaluate how combinations of lifetime, carrier density, back electron reflection, and interfacial properties affect voltage and cell performance. Two different strategies for improving voltage and performance are explored.
机译:在当今最高效率的CdTe太阳能电池和可比带隙的单晶电池之间,性能存在显着差异。对这种差异的最大贡献是电压,当对带隙进行适当调整时,最佳CdTe电池的值比最佳GaAs电池低约230 mV。 CdTe电压和填充因子目前受到低复合寿命(接近1 ns),低空穴密度(接近10〜(14)cm〜(-3))以及某些情况下过度的背接触势垒的影响。数值模拟用于评估寿命,载流子密度,反电子反射和界面特性的组合如何影响电压和电池性能。探索了两种改善电压和性能的不同策略。

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