首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Butyldithiocarbamate acid solution processing: its fundamentals and applications in chalcogenide thin film solar cells
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Butyldithiocarbamate acid solution processing: its fundamentals and applications in chalcogenide thin film solar cells

机译:丁基二硫代氨基甲酸酸溶液加工:其基础知识与硫属化物薄膜太阳能电池

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摘要

Solution methods have been widely explored in chalcogenide photovoltaics because of their simple processes and low cost. Currently, the solvents used in many solution processes are toxic and have low solubility for metal chalcogenides, such as hydrazine and diamine-dithiol solvents; this limits their development and large-scale applications. Butyldithiocarbamate acid (BDCA), a relatively environmentally friendly solvent compared with commonly used hydrazine and diamine-dithiol solvents, can dissolve various metal oxides and metal hydroxides; this, it is promising for the deposition of metal chalcogenide films. In this review, we introduce the fundamental chemical properties of BDCA in detail and summarize the application of the BDCA solution method in high-efficient and low-cost photovoltaics, including Sb2S3, Sb2S3-xSex, CuSbS2, Cu(In,Ga)(S,Se)(2) and Cu2ZnSn(S,Se)(4) thin film solar cells. We hope this review will stimulate more researchers to explore more metal chalcogenides and use them in different fields, such as photocatalysis and photodetectors.
机译:溶液方法已广泛探索硫属化物光伏,因为它们的工艺简单,成本低。目前,许多溶液方法中使用的溶剂是有毒的,并且对于金属硫芥子,例如肼和二胺 - 二硫醇溶剂具有低溶解度;这限制了他们的发展和大规模应用。丁基二硫代氨基甲酸乙酯(BDCA),与常用的肼和二胺 - 二硫醇溶剂相比,相对较环保的溶剂,可溶于各种金属氧化物和金属氢氧化物;这样,它很有希望沉积金属硫属化物膜。在本文中,我们详细介绍了BDCA的基本化学性质,并总结了BDCA解决方案方法在高效和低成本光伏中的应用,包括SB2S3,SB2S3-XSEX,CUSBS2,CU(IN,GA)(S ,Se)(2)和Cu2Znsn(S,Se)(4)薄膜太阳能电池。我们希望这篇审查能够刺激更多的研究人员来探索更多的金属硫属元素化物,并在不同的领域中使用它们,例如光催化和光电探测器。

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