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Chemical deposition of selenium layers for selenization of sputtered and electrodeposited Cu-Zn-Sn metallic layers for photovoltaic application

机译:硒层的化学沉积,以硒化用于光伏应用的溅射和电沉积Cu-Zn-Sn金属层

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摘要

One of the key steps for high efficiency kesterite based solar cells is the control of the growth conditions of the kesterite phase from precursors. In this work, chemical deposition was used to introduce the selenium needed for Cu-Zn-Sn selenization and Cu2ZnSnSe4 (CZTSe) synthesis. The influence of annealing time and precursor morphology based on deposition techniques (electrodeposition or sputtering) on the reaction path and kinetics of growth and degradation of kesterite phase was studied using scanning electron microscopy, X-ray diffraction and Raman characterizations. Important differences were detected between porous electrodeposited precursors and dense sputtered precursors. It was suggested that this difference comes from the morphology of the precursors, and that a control of the morphology is critical for the control of the annealing processes in CZTSe synthesis. (C) 2015 Published by Elsevier B.V.
机译:高效基于钾长石的太阳能电池的关键步骤之一是控制前驱体中钾长石相的生长条件。在这项工作中,使用化学沉积法引入了硒化铜和硒化锌以及合成Cu2ZnSnSe4(CZTSe)所需的硒。使用扫描电子显微镜,X射线衍射和拉曼表征研究了基于沉积技术(电沉积或溅射)的退火时间和前驱物形态对反应路径以及钾长石相生长和降解动力学的影响。在多孔电沉积前驱物和致密溅射前驱物之间检测到重要差异。有人认为,这种差异来自前体的形态,并且形态的控制对于控制CZTSe合成中的退火过程至关重要。 (C)2015由Elsevier B.V.发布

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