CZTS monograin membranes for photoelectrochemical fuel production preparation and characterization

A. Samieipour, E. Kouhiisfahani, Semjon Galajev, D. Meissner
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引用次数: 3

Abstract

Although photovoltaic is one the most promising solution for the future power supply in the world, the issue of storing it is still an open problem. Photoelectrochemical (PEC) cells, which convert solar energy into storable chemical energy directly, is one of the solutions of the storage problem in photovoltaics. In this paper the preparation of freestanding monograin membranes for use in PECs and their characterization is described. The manufacturing process in terms of reproducibility semiconductor particle densities and accessibility for contact formation is optimized. Here especially the etching process reducing the thickness of the polymer film and thereby exposing more of the monograin particles required attention since the etching temperature plays an important role determining the thickness of the. Whereas monograin layer solar cells as yet require particles of at least 45 μm diameter, the monograin membrane process developed here allows to produce such membranes from particles as yet down to 38-45 μm diameter, open and accessible from both sides.
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用于光电化学燃料生产的CZTS单粒膜的制备与表征
虽然光伏发电是世界上最有前途的未来电力供应解决方案之一,但它的存储问题仍然是一个悬而未决的问题。光电化学电池将太阳能直接转化为可储存的化学能,是解决光伏发电储存问题的方法之一。本文介绍了用于聚氯乙烯的独立式单粒膜的制备及其性能。在半导体粒子密度的再现性和接触形成的可及性方面,优化了制造工艺。这里尤其需要注意的是,蚀刻工艺降低了聚合物薄膜的厚度,从而暴露出更多的单粒颗粒,因为蚀刻温度对聚合物薄膜的厚度起着重要的决定作用。单粒层太阳能电池需要直径至少为45 μm的颗粒,而这里开发的单粒膜工艺允许从直径38-45 μm的颗粒生产这种膜,并且可以从两侧打开。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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