Xu Han, Meng Rutao, Xu Xuejun, Wu Li, Sun Yali, Liu Yue, Wang Zuoyun, Wang Nan, Li Ming, Zhang Yi
Institute of Photoelectronic Thin Film Devices and Technology, State Key Laboratory of Photovoltaic Materials and Cell, and Engineering Research Center of Thin Film Optoelectronics Technology, Ministry of Education, Nankai University, Tianjin, 300350, China.
Key Laboratory of Weak-Light Nonlinear Photonics Ministry of Education, School of Physics, Nankai University, Tianjin, 300071, China.
Small Methods. 2025 Mar;9(3):e2401084. doi: 10.1002/smtd.202401084. Epub 2024 Oct 1.
Flexible CuZnSn(S,Se) (CZTSSe) solar cells is attracting much attention because of their enormous application prospects. However, current flexible CZTSSe solar cells with Mo foil as substrate still suffer from severe back interface problems due to the complexity of substrate surfaces. Herein, a facile approach to tailor the surface of the flexible substrate and modify the back interface between CZTSSe and Mo foil is proposed. The study discloses that a simple polishing can not only improve the wettability of the precursor solution on the substrate unexpectedly and thus improve the quality of the CZTSSe film, but also increase the mechanical stability of the absorber layer grown on Mo foil. The subsequent UV-ozone treatment helps to form a favorite MoO layer for efficient CZTSSe devices. Surprisingly, the quasi-ohmic contact is formed between CZTSSe/Mo foil by such combined treatments and thus promoting the carrier collection. Consequently, the efficiency of the flexible CZTSSe solar cell is significantly improved from 4.94% to 10.32% without anti-reflection layer. The bending durability of the cell fabricated on the treated Mo foil is increased greatly. This work discloses that back contact interface is very important for the carrier collection and thus the highly efficient flexible thin film solar cells.
柔性铜锌锡(硫,硒)(CZTSSe)太阳能电池因其巨大的应用前景而备受关注。然而,目前以钼箔为衬底的柔性CZTSSe太阳能电池,由于衬底表面的复杂性,仍然存在严重的背界面问题。在此,提出了一种简便的方法来修饰柔性衬底的表面,并改善CZTSSe与钼箔之间的背界面。研究表明,简单的抛光不仅能意外地提高前驱体溶液在衬底上的润湿性,从而提高CZTSSe薄膜的质量,还能增加在钼箔上生长的吸收层的机械稳定性。随后的紫外臭氧处理有助于形成有利于高效CZTSSe器件的MoO层。令人惊讶的是,通过这种组合处理,在CZTSSe/钼箔之间形成了准欧姆接触,从而促进了载流子收集。因此,在没有抗反射层的情况下,柔性CZTSSe太阳能电池的效率从4.94%显著提高到了10.32%。在经过处理的钼箔上制备的电池的弯曲耐久性也大大提高。这项工作表明,背接触界面对于载流子收集以及高效柔性薄膜太阳能电池非常重要。