Ambient-Air Sulfurization Process for Cu2ZnSnS4 Thin Film Solar Cells: Self-Creating Inert Atmosphere Using Sulfur Vapor

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Abstract

Sulfurization is an inevitable process for depositing high-quality Cu2ZnSnS4 (CZTS) thin films, which usually are implemented under high vacuum or inert atmosphere. In this work, a novel ambient-air sulfurization was designed for fabricating a CZTS absorber, with the aim to eliminate the requirement of complex vacuum equipment. The sulfur powder and oxides precursor films were enclosed in a quartz container, in which the inert atmosphere was self-created during the annealing. The sulfurization mechanism was studied carefully through varying the amount of sulfur powder. Finally, the optimized CZTS thin films showed a pure Kesterite phase, large grains, and a suitable band gap. The device fabricated with the ambient-air sulfurized CZTS thin films exhibited an efficiency of 3% with Voc = 0.52 V, Jsc = 12.61 mA/cm2, and FF = 46.6%. This study offers a facile sulfurization route for CZTS thin films, and the successful design principle could be applied in other absorber materials.

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Cai, H., Xia, Y., Dao, C., Li, J., Lin, L., Kong, X., … Chen, G. (2019). Ambient-Air Sulfurization Process for Cu2ZnSnS4 Thin Film Solar Cells: Self-Creating Inert Atmosphere Using Sulfur Vapor. ACS Applied Energy Materials, 2(10), 7279–7287. https://doi.org/10.1021/acsaem.9b01256

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