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光伏发电技术 ★ 5.0

通过升华法中锂掺杂提升Sb2(S,Se)3薄膜太阳能电池的效率

Enhancing the efficiency of Sb2(S,Se)3 thin-film solar cells via Li doping in close-spaced sublimation

作者 Zhi-Ping Huanga1 · Hui-Lib1 · Wei-Ze Wang · Hu Li · Li-Mei Lin · Zhi-Gao Huang · Shui-Yuan Chen · Gui-Lin Chen
期刊 Solar Energy
出版日期 2025年1月
卷/期 第 285 卷
技术分类 光伏发电技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 Li doping strategy enhances Sb2(S Se)3 thin-film solar cells via close-spaced sublimation (CSS).
语言:

中文摘要

Sb2(S,Se)3是一种具有广阔前景的光伏材料,因其带隙可调、热稳定性高以及具备低成本制备潜力。然而,通过近距离升华法(CSS)制备的薄膜通常存在较多缺陷,从而降低器件效率。本研究引入锂(Li)掺杂以改善晶体质量、载流子浓度和电导率。通过熔盐处理将锂掺入升华源中,成功制备出均匀的Li-Sb2(S,Se)3薄膜。所制备的ITO/CdS/Li-Sb2(S,Se)3/PbS/碳基太阳能电池实现了6.18%的功率转换效率,显著优于未掺杂器件。本研究进一步系统分析了材料的光电性能,结果表明,锂掺杂能有效抑制非辐射复合,提升载流子提取能力,并提高价带最大值(VBM),从而优化能级排列,促进空穴传输。此外,由于锂掺杂带来的表面电导率提升和载流子浓度增加,进一步增强了载流子输运并减少了复合损失。该研究表明,碱金属掺杂能够显著改善Sb2(S,Se)3薄膜的光电性能,为锑基薄膜太阳能电池的效率进一步提升提供了可行路径。

English Abstract

Abstract Sb 2 (S,Se) 3 is a promising photovoltaic material due to its tunable bandgap, high thermal stability, and low-cost production potential. However, films produced by close-spaced sublimation (CSS) often suffer from defects that reduce efficiency. In this work, lithium (Li) doping was introduced to improve crystal quality, carrier concentration, and conductivity. The lithium was incorporated into the sublimation source via molten salt treatment, resulting in a uniform Li-Sb 2 (S,Se) 3 thin film . The resulting ITO/CdS/Li-Sb 2 (S,Se) 3 /PbS/Carbon solar cell achieved a power conversion efficiency of 6.18%, a significant improvement over undoped devices. The study further investigates the optoelectronic properties, revealing that Li doping effectively reduces non-radiative recombination, improves carrier extraction, and increases the valence band maximum (VBM), optimizing energy level alignment for enhanced hole transport. Additionally, the improved surface conductivity and higher carrier concentration due to Li doping contributed to enhanced carrier transport and reduced recombination.This research demonstrates that alkali metal doping can enhance the optoelectronic properties of Sb 2 (S,Se) 3 films, providing a pathway for further efficiency improvements in antimony-based thin-film solar cells.
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SunView 深度解读

该Li掺杂Sb2(S,Se)3薄膜技术通过优化载流子浓度和能级匹配,将光伏转换效率提升至6.18%,为阳光电源SG系列光伏逆变器的上游组件技术提供创新思路。其降低非辐射复合、改善载流子提取的机制,可启发我司MPPT算法优化和弱光响应改进。碱金属掺杂提升薄膜导电性的方法,对PowerTitan储能系统中电极材料改性、降低接触电阻具有借鉴意义,有助于提升系统循环效率和功率密度。