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Boosting the efficiency of kesterite Cu2ZnSnS4 solar cells by optimizing the heterojunction interface quality

机译:通过优化异质结界面质量来提高KETERITE CU2ZNS4太阳能电池的效率

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Heterojunction interface of the Cu2ZnSnS4 (CZTS) solar cells is one the critical factors for performance loss, especially when applying Zn-based alternative buffer replacing CdS. In this work, the CZTS/ZnCdS interface quality is optimized by applying ammonia as complexing agent in the precursor solution of the SILAR process for ZnCdS deposition. Excess oxide and hydroxide impurities formed at the interface are limited to a low level, which reduces the related electronic defects in the depletion region and alleviates the metastability behavior caused by the Zn(OH)2. The application of ammonia also enables the control of reaction mechanism, improving the epitaxial growth, thereby reducing the heterojunction interface recombination. Finally, efficiency of up to 10% is achieved by modifying the interface structure thanks to the chemistry method.
机译:Cu的异结界面 2 znsns. 4 (CZTS)太阳能电池是性能损失的关键因素,特别是在应用基于Zn的替代缓冲器时更换CD。在这项工作中,通过在ZnCds沉积的Sill方法的前体溶液中施用氨作为络合剂来优化CZTS / ZnCds接口质量。在界面中形成的过量氧化物和氢氧化物杂质限制为低水平,这减少了耗尽区中的相关电子缺陷,并减轻了由Zn(OH)引起的亚稳定性行为 2 。氨的应用还使得能够控制反应机理,提高外延生长,从而减少异质结界面重组。最后,由于化学方法,通过改变界面结构来实现高达10%的效率。

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