Performance evaluation of Sb2Se3-based solar photovoltaic cells with various ETL and Cu2O as HTL by SCAPS-1D

A. El Khalfi, L. Et-taya, Youssef Achenani, M. Sahal, L. Elmaimouni, A. Benami
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引用次数: 1

Abstract

Abstract Sb2Se3 photovoltaic cells have garnered much attention recently because of their inexpensive manufacture and long-term stability. So, different buffer layers were investigated using the SCAPS software to improve the device's output. By comparing J-V characteristics and QE for cells with different ETLs, WS2 was discovered to be the best ETL. The impact of carrier concentrations, the active layer, ETL and HTL thickness, absorber density of defects, and electron affinity were also investigated. It was discovered that WS2 could be a good substitute for conventional ETLs. After optimization, efficiency is 30.03%, FF is 87.13%, JSC is 37.15 mA/cm2, and VOC is 0.928 V. This research provides a new strategy to fabricate high-efficiency and Cd-free Sb2Se3-based photovoltaic cells.
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SCAPS-1D对不同ETL和Cu2O作为HTL的Sb2Se3基太阳能光伏电池的性能评价
Sb2Se3光伏电池因其低廉的制造成本和长期的稳定性而备受关注。因此,使用SCAPS软件对不同的缓冲层进行了研究,以提高设备的输出。通过比较不同ETL细胞的J-V特性和QE,发现WS2是最佳的ETL。研究了载流子浓度、活性层、ETL和HTL厚度、缺陷吸收剂密度和电子亲和能力等因素的影响。发现WS2可以很好地替代传统的etl。优化后的效率为30.03%,FF为87.13%,JSC为37.15 mA/cm2, VOC为0.928 V。本研究为制备高效、无cd的sb2se3基光伏电池提供了新思路。
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来源期刊
Karbala International Journal of Modern Science
Karbala International Journal of Modern Science Multidisciplinary-Multidisciplinary
CiteScore
2.50
自引率
0.00%
发文量
54
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