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Piezo-Phototronic Effect Enhanced Flexible Solar Cells Based on n-ZnO/p-SnS Core?¢????Shell Nanowire Array

机译:基于n-ZnO / p-SnS核的压电光电效应增强型柔性太阳能电池-壳纳米线阵列

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Abstract The piezo-phototronic effect is about the enhanced separation, transport, and recombination of the photogenerated carriers using the piezoelectric polarization charges present in piezoelectric-semiconductor materials. Here, it is presented that the piezo-phototronic effect can be effectively applied to improve the relative conversion efficiency of a flexible solar cell based on n-ZnO/p-SnS core?¢????shell nanowire array for 37.3% under a moderate vertical pressure. The performance of the solar cell can be effectively enhanced by a gentle bending of the device, showing its potential for application in curly geometries. This study not only adds further understanding about the concept of increasing solar energy conversion efficiency via piezo-phototronic effect, but also demonstrates the great potential of piezo-phototronic effect in the application of large-scale, flexible, and lightweight nanowire array solar cells.
机译:摘要压电效应是关于利用压电半导体材料中存在的压电极化电荷增强光生载流子的分离,传输和重组。在此提出,压电光电子效应可以有效地提高基于n-ZnO / p-SnS核-?-壳纳米线阵列的柔性太阳能电池的相对转换效率,在3。垂直压力适中。轻柔地弯曲设备可以有效地提高太阳能电池的性能,显示出其在卷曲几何形状中应用的潜力。这项研究不仅增加了关于通过压电效应提高太阳能转换效率的概念的理解,而且展示了压电效应在大规模,柔性,轻量级纳米线阵列太阳能电池应用中的巨大潜力。

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