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Piezo-phototronics effect on nano/microwire solar cells

机译:压电对纳米/微线太阳能电池的影响

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摘要

Wurtzite structures, such as ZnO, GaN, InN and CdS, are piezoelectric semiconductor materials. A piezopotential is formed in the crystal by the piezoelectric charges created by applying a stress. The inner-crystal piezopotential can effectively tune/control the carrier separations and transport processes at the vicinity of a p-n junction or metal-semiconductor contact, which is called the piezo-photo-tronic effect. The presence of piezoelectric charges at the interface/ junction can significantly affect the performances of photovoltaic devices, especially flexible and printed organic/inorganic solar cells fabricated using piezoelectric semiconductor nano/microwires. In this paper, the current-voltage characteristics of a solar cell have been studied theoretically and experimentally in the presence of the piezoelectric effect. The analytical results are obtained for a ZnO piezoelectric p-n junction solar cell under simplified conditions, which provide a basic physical picture for understanding the mechanism of the piezoelectric solar cell. Furthermore, the maximum output of the solar cell has been calculated numerically. Finally, the experimental results of organic solar cells support our theoretical model. Using the piezoelectric effect created by external stress, our study not only provides the first basic theoretical understanding about the piezo-phototronic effect on the characteristics of a solar cell but also assists the design for higher performance solar cells.
机译:诸如ZnO,GaN,InN和CdS的纤锌矿结构是压电半导体材料。通过施加应力产生的压电电荷在晶体中形成压电势。内晶体压电势能有效地调节/控制p-n结或金属-半导体接触附近的载流子分离和传输过程,这称为压电效应。界面/结处压电电荷的存在会显着影响光伏器件的性能,尤其是使用压电半导体纳米/微线制造的柔性和印刷有机/无机太阳能电池。在本文中,在存在压电效应的情况下,对太阳能电池的电流-电压特性进行了理论和实验研究。在简化条件下获得了ZnO压电p-n结太阳能电池的分析结果,这为理解压电太阳能电池的机理提供了基本的物理图片。此外,已经通过数值计算了太阳能电池的最大输出。最后,有机太阳能电池的实验结果支持了我们的理论模型。利用外部应力产生的压电效应,我们的研究不仅提供了关于压电效应对太阳能电池特性的第一个基本理论理解,而且还有助于设计高性能的太阳能电池。

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  • 来源
    《Energy & environmental science》 |2012年第5期|p.6850-6856|共7页
  • 作者单位

    School of Material Science and Engineering, Georgia Institute of Technology, Atlanta, Georgia 30332-0245, USA;

    School of Material Science and Engineering, Georgia Institute of Technology, Atlanta, Georgia 30332-0245, USA;

    School of Material Science and Engineering, Georgia Institute of Technology, Atlanta, Georgia 30332-0245, USA;

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