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The importance of back contact modification in Cu2ZnSnSe4 solar cells: The role of a thin MoO2 layer

机译:背接触修饰在Cu2ZnSnSe4太阳能电池中的重要性:薄的MoO2层的作用

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摘要

Cu2ZnSn(SxSe1-x)(4) (CZTSSe) photovoltaic absorbers could be the earth-abundant and low toxicity replacement for the already commercialized Culn(1-x)Ga(x)Se(2) (CIGS) thin film technology. In order to make this possible, specific research efforts applied to the bulk, front and back interfaces must be performed with the aim of improving CZTSSe performance. In this paper the importance of back contact modification to obtain high efficiency Cu2ZnSnSe4 (CZTSe) solar cells and to increase a paramount and limiting parameter such as Voc is highlighted. Several Mo configurations (monolayer, bi-layer and tri-layer) with different electrical and morphological properties are investigated in CZTSe solar cells. An optimum tri-layer configuration in order to minimize overselenization of the back contact during thermal annealing while keeping reasonable electrical features is defined. Additionally, a thin intermediate MoO2 layer that results in a very effective barrier against selenization and innovative way to efficiently assist in the CZTSe absorber sintering is introduced. The use of this layer enhances grain growth and subsequently the efficiency of solar cells increases via major V-OC and FF improvement. An efficiency increase from 7.2% to 9.5% is obtained using a Mo tri-layer with a 20 nm intermediate MoO2 layer. (C) 2016 Elsevier Ltd. All rights reserved.
机译:Cu2ZnSn(SxSe1-x)(4)(CZTSSe)光伏吸收剂可以替代已经商业化的Culn(1-x)Ga(x)Se(2)(CIGS)薄膜技术,在地球上物美价廉且低毒。为了使这成为可能,必须对散装,正面和背面接口进行特定的研究工作,以提高CZTSSe的性能。在本文中,强调了背接触修饰对获得高效Cu2ZnSnSe4(CZTSe)太阳能电池并增加最重要的参数和极限参数(例如Voc)的重要性。在CZTSe太阳能电池中研究了几种具有不同电学和形态学性质的Mo构型(单层,双层和三层)。定义了一种最佳的三层结构,以便在保持合理的电气特性的同时,使热退火过程中背面触点的过硒化最小化。此外,介绍了一个薄的中间MoO2层,该层可形成非常有效的硒化阻挡层,并提供了有效协助CZTSe吸收剂烧结的创新方法。该层的使用增强了晶粒的生长,随后通过主要的V-OC和FF改善,提高了太阳能电池的效率。使用具有20 nm中间MoO2层的Mo三层,可以将效率从7.2%提高到9.5%。 (C)2016 Elsevier Ltd.保留所有权利。

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