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首页> 外文期刊>Semiconductors >Effect of the chemical composition of Cu-In-Ga-Se layers on the photoconductivity and conversion efficiency of CdS/CIGSe solar cells
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Effect of the chemical composition of Cu-In-Ga-Se layers on the photoconductivity and conversion efficiency of CdS/CIGSe solar cells

机译:Cu-In-Ga-Se层化学组成对CdS / CIGSe太阳能电池光电导率和转换效率的影响

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摘要

The effect of the [Ga]/[In+Ga] ratio of gallium and indium on the microwave photoconductivity of Cu-In-Ga-Se (CIGSe) films and on the efficiency of solar cells fabricated in accordance with the same technology is investigated. According to the observations of a field-emission scanning electron microscopy (FESEM), the grain size decreases with increasing Ga content. With increasing gallium content in the samples, the photogenerated-electron lifetime and the activation energy of the microwave photoconductivity also decrease. The changes in the activation energy of the through conduction in darkness are less than 20%. Analysis of the obtained data shows that the known effect of the gallium gradient on the efficiency should be associated with modification of the internal structure of grains instead of with their boundaries.
机译:研究了镓和铟的[Ga] / [In + Ga]比对Cu-In-Ga-Se(CIGSe)薄膜的微波光电导性以及根据相同技术制造的太阳能电池效率的影响。根据场发射扫描电子显微镜(FESEM)的观察,晶粒尺寸随着Ga含量的增加而减小。随着样品中镓含量的增加,光生电子寿命和微波光电导的活化能也会降低。在黑暗中,直通传导的活化能变化小于20%。对获得的数据的分析表明,镓梯度对效率的已知影响应该与晶粒内部结构的改变相关,而不是其边界。

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