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Probing the CZTS/CdS heterojunction utilizing photoelectrochemistry and x-ray absorption spectroscopy

机译:利用光电化学和X射线吸收光谱探测CZT / CDS异质结

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The importance of renewable resources is becoming more and more influential on research due to the depletion of fossil fuels. Cost-effective ways of harvesting solar energy should also be at the forefront of these investigations. Cu2ZnSnS4 (CZTS) solar cells are well within the frame of these goals, and a thorough understanding of how they are made and processed synthetically is crucial. The CZTS/CdS heterojunction was examined using photoelectrochemistry and synchrotron radiation (SR) spectroscopy. These tools provided physical insights into this interface that was formed by the electrophoretic deposition of CZTS nanocrystals and chemical bath deposition (CBD) of CdS for the respective films. It was discovered that CBD induced a change in the local and long range environment of the Zn in the CZTS lattice, which was detrimental to the photoresponse. X-ray absorption near-edge structures and extended X-ray absorption fine structures (EXAFSs) of the junction showed that this change was at an atomic level and was associated with the coordination of oxygen to zinc. This was confirmed through FEFF fitting of the EXAFS and through IR spectroscopy. It was found that this change in both photoresponse and the Zn coordination can be reversed with the use of low temperature annealing. Investigating CZTS through SR techniques provides detailed structural information of minor changes from the zinc perspective. Published by AIP Publishing.
机译:由于化石燃料的消耗,可再生资源的重要性变得越来越有影响力。成本效益的收获太阳能的方法也应该是这些调查的最前沿。 Cu2zNSN4(CZTS)太阳能电池在这些目标的框架内很好,并且彻底了解它们如何合成处理和处理至关重要。使用光电化学和同步辐射(SR)光谱检查CZT / CDS异质结。这些工具为该界面提供了物理见解,该界面是由CDS的CDS的CDS纳米晶体和化学浴沉积(CBD)的电泳沉积形成的界面。发现CBD在CZTS格子中诱导Zn的局部和长距离环境的变化,这对光响应是有害的。结的X射线吸收近边缘结构和延长X射线吸收细结构(Exafs)的结显示,这种变化在原子水平上,与氧气与锌的配位相关。这通过EXAFS的FEFF配合和IR光谱来确认。发现光响应和Zn配位的这种变化可以随着低温退火而逆转。通过SR技术调查CZTS提供了锌视角的微小变化的详细结构信息。通过AIP发布发布。

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