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Efficiency enhancement of Cu2ZnSnS4 solar cells via surface treatment engineering

机译:通过表面处理工程提高Cu2ZnSnS4太阳能电池的效率

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摘要

Pure-sulphide Cu2ZnSnS4 (CZTS) thin film solar cells were prepared by a low-cost, non-toxic and high-throughput method based on the thermal decomposition and reaction of sol–gel precursor solution, followed by a high temperature sulfurization process in sulphur atmosphere, which usually gave rise to the unexpected Cu-poor and Zn-rich phase after sulfurization. In order to remove the formation of detrimental secondary phases, e.g. ZnS, a novel method with hydrochloric acid solution treatment to the CZTS absorber layer surface was employed. By using this method, a competitive power conversion efficiency as high as 4.73% was obtained, which is a factor of 4.8 of that of the control CZTS solar cell without surface treatment. This presents a customized process for CZTS photovoltaic technologies that is more environmentally friendly and considerably less toxic than the widely used KCN etching approach.
机译:基于硫化物-凝胶前体溶液的热分解和反应,然后在硫中进行高温硫化工艺,通过低成本,无毒,高通量的方法制备了纯硫化物Cu2ZnSnS4(CZTS)薄膜太阳能电池硫化后通常会产生意想不到的贫铜富锌相。为了消除有害的次级相的形成,例如ZnS是一种采用盐酸溶液处理CZTS吸收层表面的新方法。通过使用这种方法,获得了高达4.73%的竞争性功率转换效率,这是未经表面处理的对照CZTS太阳能电池的4.8倍。这提供了一种用于CZTS光伏技术的定制工艺,与广泛使用的KCN蚀刻方法相比,该工艺对环境更友好且毒性更低。

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