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Cyclic voltammetry studies of copper, tin and zinc electrodeposition in a citrate complex system for CZTS solar cell application

机译:用于CZTS太阳能电池的柠檬酸盐复合系统中铜,锡和锌电沉积的循环伏安法研究

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摘要

Cu2ZnSnS4 (CZTS) has attracted considerable attention as the next generation thin film solar cell to replace CIGS because of its price and availability. The electrodeposition method is one of the fabrication methods. The reduction behaviors of each Cu, Sn and Zn from the unitary system were examined. Cyclic voltammtry (CV) was performed to analyze the behaviors. Trisodium citrate was used as the complexing agent to reduce the difference in the reduction potentials of each material. The effects of pH on the stability of the complexes were also investigated and pH 4.7 was selected to minimize the concentration of H(3)Cit and Cit(3-). The reduction potential of Cu was lowered from -0.2 V (vs. Ag/AgCl) to -0.5 V. The reduction potential of Sn was lowered from -0.5 V (vs. Ag/AgCl) to -0.7 V. The reduction potential of Zn was changed from -1.2 V (vs. Ag/AgCl) to -0.7 V. The change in reduction potential in a complex system can allow the fabrication of CZTS thin films from a Cu, Sn and Zn mixed single bath using an electrodeposition method. (C) 2015 Elsevier B.V. All rights reserved.
机译:作为替代CIGS的下一代薄膜太阳能电池,Cu2ZnSnS4(CZTS)由于其价格和可获得性而备受关注。电沉积方法是制造方法之一。研究了来自单一体系的每种Cu,Sn和Zn的还原行为。进行循环伏安法(CV)以分析行为。柠檬酸三钠用作络合剂以减少每种材料的还原电势差。还研究了pH对配合物稳定性的影响,选择pH 4.7以使H(3)Cit和Cit(3-)的浓度最小。 Cu的还原电位从-0.2 V(vs. Ag / AgCl)降低到-0.5V。Sn的还原电位从-0.5 V(vs. Ag / AgCl)降低到-0.7V。 Zn从-1.2 V(vs.Ag/AgCl)更改为-0.7V。复杂系统中还原电位的变化可允许使用电沉积方法从Cu,Sn和Zn混合单浴中制备CZTS薄膜。 (C)2015 Elsevier B.V.保留所有权利。

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