论文标题

带有理想能量选择性接触的热载体太阳能电池中的光电子互惠性

Optoelectronic Reciprocity in Hot Carrier Solar Cells with Ideal Energy Selective Contacts

论文作者

Pusch, Andreas, Dubajic, Milos, Nielsen, Michael P., Conibeer, Gavin J., Bremner, Stephen P., Ekins-Daukes, Nicholas J.

论文摘要

热载体太阳能电池承诺理论功率转换效率远远超出了单个连接极限。但是,热载体太阳能电池的实际实现远远落后于这些理论预测。传统的单连接太阳能电池的电致发光的互惠关系在推动其效率更接近理论限制方面非常成功。在这项工作中,我们讨论了功能运行的热载体设备的签名如何在电致发光和深色$ I-V $特征中实验表现出来。热载体性能导致与传统单连接太阳能电池典型的冲击二极管方程式偏离。这些偏差直接与载体温度的升高以及从电淡发光光谱测得的温度有关。我们还阐明了热载体太阳能电池在黑暗中的行为如何取决于螺旋钻过程是否起着重要作用,从而揭示了可忽略不计的螺旋螺旋体重组(载体保护模型)与热载体太阳能电池可忽略的对比(载体保护模型)。

Hot carrier solar cells promise theoretical power conversion efficiencies far beyond the single junction limit. However, practical implementations of hot carrier solar cells have lagged far behind those theoretical predictions. Reciprocity relations for electro-luminescence from conventional single junction solar cells have been extremely successful in driving their efficiency ever closer to the theoretical limits. In this work, we discuss how the signatures of a functioning hot carrier device should manifest experimentally in electro-luminescence and dark $I-V$ characteristics. Hot carrier properties lead to deviations from the Shockley diode equation that is typical for conventional single junction solar cells. These deviations are directly linked to an increase in temperature of the carriers and therefore the temperature measured from electro-luminescence spectra. We also elucidate how the behaviour of hot carrier solar cells in the dark depends on whether Auger processes play a significant role, revealing a stark contrast between the regime of negligible Auger recombination (carrier conservation model) and dominant Auger recombination (Impact Ionization model) for hot carrier solar cells.

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