Post-annealing Treatment on Hydrothermally Grown Sb2(S, Se)3 Thin Films for Efficient Solar Cells

Suman Rijal, Zhaoning Song, Dengbing Li, J. Chung, S. Bista, Dipendra Pokhrel, Sabin Neupane, R. Ellingson, Yanfa Yan
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Abstract

In this work, we fabricate antimony selenosulfide (Sb2(S, Se)3) thin film solar cells by a hydrothermal method followed by a post-deposition annealing process at different temperatures. The effects of the annealing temperature on the morphological and structural properties of the Sb2(S, Se)3 films are systematically investigated by scanning electron microscopy and X-ray diffraction analyses. We find that a proper annealing temperature leads to a high-quality Sb2(S, Se)3 film with large crystal grains, proper stoichiometry, and high crystallinity. After optimizing the process, we obtained Sb2(S, Se)3 solar cells with an improved power conversion efficiency from 2.04 to 8.48%.
高效太阳能电池用水热生长Sb2(S, Se)3薄膜的后退火处理
在这项工作中,我们采用水热法和沉积后退火工艺在不同温度下制备硒化锑(Sb2(S, Se)3)薄膜太阳能电池。利用扫描电子显微镜和x射线衍射分析系统地研究了退火温度对Sb2(S, Se)3薄膜形貌和结构性能的影响。我们发现,适当的退火温度可以得到高质量的Sb2(S, Se)3薄膜,具有大晶粒,合适的化学计量和高结晶度。经过工艺优化,获得了功率转换效率由2.04提高到8.48%的Sb2(S, Se)3太阳能电池。
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