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Enhanced ZnO based solar cell efficiency by piezo-phototronic effect

机译:压电光反射效应增强了基于ZnO的太阳能电池效率

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We report piezo-phototronic effects on the electrical properties of a Schottky contact metal/ZnO(n) solar cell. The piezo-phototronic effect is a three way coupling effect of piezoelectric, semiconductor and photonic properties occurring in non-central symmetric semiconductor materials when an applied strain to a semiconductor generates a piezoelectric potential controlling the carrier generation, transport, separation and/or recombination at the junction. The purpose of the present study is to determinate the influence of piezoelectric polarization on the electrical characteristics of this solar cell. Results show that the stress causes an increase of the electric field in the region where the piezoelectric fields are located. The sign of the stress proves that if it is positive (extensive strain), the effective barrier height increases which reduces the flow of electrons and thereafter is considered as a limiting factor for photovoltaic conversion, However, if the stress is negative (compression strain), a significant improvement of photovoltaic efficiency is obtained. Using the piezoelectric effects created by an external stress, our study provides not only a theoretical understanding about the piezo-phototronic effects on the characteristics of a solar cell but also assists for the possible design improvement allowing to increase.
机译:我们报告了对肖特基联系金属/ ZnO(N)太阳能电池的电气性质的压电反应效应。压电效果是当施加到半导体的施加应变产生控制载体产生,传输,分离和/或重组时,在非中心对称半导体材料中发生的三种方式耦合效果。交界处。本研究的目的是确定压电极化对该太阳能电池的电气特性的影响。结果表明,压力导致压电场所在的区域中的电场增加。应力的迹象证明,如果是正(大应变),则减少电子流量的有效屏障高度增加,其后被认为是光伏转换的限制因素,但是,如果应力为负(压缩应变) ,获得了光伏效率的显着提高。使用由外部压力产生的压电效应,我们的研究不仅提供了对压电反应效应对太阳能电池特性的理论理解,而且还提供了允许增加的可能设计改进的帮助。

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