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旋涂过程中的视觉颜色变化指导Cu ZnSn(S,Se)薄膜的质量

Visual Color Change During Spin-coating Guiding the Quality of Cu ZnSn(S,Se) Films.

作者信息

Wang Zuoyun, Meng Rutao, Guo Hongling, Sun Yali, Xu Xuejun, Xu Han, Li Jianpeng, Zhang Yi

机构信息

Institute of Photoelectronic Thin Film Devices and Technology, Tianjin Key Laboratory of Thin Film Devices and Technology, and Engineering Research Center of Thin Film Optoelectronics Technology, Ministry of Education, Nankai University, Tianjin, 300350, P. R. China.

出版信息

Small Methods. 2024 Jan;8(1):e2300971. doi: 10.1002/smtd.202300971. Epub 2023 Sep 22.

Abstract

Solution method provides a low-cost and environmentally friendly route for the fabrication of Cu ZnSn(S,Se) (CZTSSe) thin-film solar cells. However, uncontrollable quality of the CZTSSe absorber layer will severely limit the device's performance. In this study, it is find that the thickness and the quality of the formed precursor is not stable because of the variation of the viscosity of the precursor solution. Combined by different characterization methods, the results disclose that such change is strongly related to the reflected color of the first coating layer during precursor growth. Further studies disclose that only by maintaining the appropriate reflected color can a well-crystallized CZTSSe film be prepared, thereby obtaining good solar cell efficiency. This semi-empirical pattern is confirmed by thin-film interference theory. Under the guidance of this method, CZTSSe absorbers with high quality are obtained easily, and the highly efficient CZTSSe solar cell can be fabricated easily. This study provides a feasible and effective strategy to obtain the optimal structure and composition of CZTSSe film toward the production of highly efficient kesterite solar cells, which can also be widely applied to the preparation of other films by solution-based method.

摘要

溶液法为制备铜锌锡硫硒(CZTSSe)薄膜太阳能电池提供了一条低成本且环保的途径。然而,CZTSSe吸收层质量难以控制会严重限制器件的性能。在本研究中,发现由于前驱体溶液粘度的变化,所形成前驱体的厚度和质量不稳定。结合不同的表征方法,结果表明这种变化与前驱体生长过程中第一涂层的反射颜色密切相关。进一步研究表明,只有保持适当的反射颜色,才能制备出结晶良好的CZTSSe薄膜,从而获得良好的太阳能电池效率。这种半经验模式得到了薄膜干涉理论的证实。在该方法的指导下,易于获得高质量的CZTSSe吸收体,并且可以轻松制备高效的CZTSSe太阳能电池。本研究为获得用于生产高效硫系太阳能电池的CZTSSe薄膜的最佳结构和组成提供了一种可行且有效的策略,该策略也可广泛应用于通过溶液法制备其他薄膜。

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