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The copper-bismuth-sulphur material system and thin film deposition of Cu3BiS3 by sputtering and evaporation for the application of photovoltaic cells

机译:铜-铋-硫材料体系以及通过溅射和蒸发的Cu3BiS3薄膜沉积在光伏电池中的应用

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摘要

The semiconducting sulphosalt Wittichenite has been identified as a possible absorber material for thin film photovoltaic devices. It has the chemical formula Cu3BiS3 and its component elements are those of low toxicity and high abundance making it a very attractive prospect for photovoltaic devices. The copper bismuth sulphur material system is not very well understood and information on it limited to a few small regions. To aid understanding of this system a pseudo-binary phase diagram along the CuS-Bi join of the Cu-Bi-S ternary phase diagram was constructed by making bulk samples of various compositions along the join and analysing them using X-ray diffraction and differential scanning calorimetry. This join was chosen because is crosses the point at which Cu3BiS3 would be expected to occur due to its stoichiometry. The CuS-Bi phase diagram shows Cu3BiS3 forms across a wide compositional range but is mixed with either bismuth metal or copper sulphides depending on composition. Films of Cu3BiS3 were made using sputtered copper and bismuth films annealed in a sulphur atmosphere and thermal co- evaporation of copper sulphide and bismuth.
机译:半导体硫酸盐Wittichenite已被确定为薄膜光伏器件的可能吸收材料。它的化学式为Cu3BiS3,其组成元素具有低毒性和高丰度,使其成为光伏器件的诱人前景。铜铋硫材料系统不是很了解,关于它的信息仅限于一些小区域。为了帮助理解该系统,通过沿连接处制作各种成分的块状样品,并使用X射线衍射和微分对其进行分析,构造了沿Cu-Bi-S三元相图的CuS-Bi连接处的伪二元相图。扫描量热法。选择该连接的原因是,由于其化学计量,该连接越过了预期会发生Cu3BiS3的点。 CuS-Bi相图显示,Cu3BiS3的形成范围很广,但根据组成与铋金属或硫化铜混合。使用在硫气氛中退火的溅射铜和铋膜以及硫化铜和铋的热共蒸发制得Cu3BiS3膜。

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    McCracken R O;

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  • 年度 2016
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