首页> 外文期刊>Journal of Materials Chemistry, A. materials for energy and sustainability >All-inorganic Sb2S3-based two-terminal tandem solar cells enable over 10.9 efficiency employing a concise interconnection layer
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All-inorganic Sb2S3-based two-terminal tandem solar cells enable over 10.9 efficiency employing a concise interconnection layer

机译:基于全无机 Sb2S3 的双端子叠层太阳能电池采用简洁的互连层,效率超过 10.9

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Tandem solar cells (TSCs) present a prospective avenue to surpass the theoretical efficiency limits of single-junction solar cells (SJSCs). Antimony sulfide (Sb2S3), a 1.7 eV bandgap semiconductor, holds high potential to serve as the top-cell absorber for TSCs. Up to now, there are few reports on Sb2S3 two-terminal (2T) TSCs due to the limit of the hole transport layer (HTL) and interconnection layer. Herein, we succeed in implementing Sb2S3-based 2T-TSCs with the assistance of lead sulfide quantum dot (PbS QD) rear cells. Firstly, by using the 1,2-ethanedithiol capped quantum dots as HTL, the power conversion efficiency (PCE) of the Sb2S3 SJSC reaches 7.82, a top value among all-inorganic Sb2S3 SC reports. More importantly, an efficient Au recombination layer is developed to bridge the two subcells and obtain the summation of the subcell open-circuit voltages (1.128 V) with a minimal voltage loss rate of ∼0.8. After the modulation of the subcell absorber thickness by optical simulation and device investigation, the champion device achieves the photocurrent matching and its 2T-TSC PCE reaches 10.92, the highest reported value among Sb2S3-based TSCs. Our work opens the door for Sb2S3 based 2T-TSCs, and is expected to trigger the hot research interest for all-inorganic antimony-based TSCs.
机译:串联太阳能电池 (TSC) 为超越单结太阳能电池 (SJSC) 的理论效率极限提供了一条前瞻性的途径。硫化锑 (Sb2S3) 是一种 1.7 eV 带隙半导体,具有作为 TSC 顶电池吸收剂的巨大潜力。到目前为止,由于空穴传输层 (HTL) 和互连层的限制,关于 Sb2S3 双端 (2T) TSC 的报道很少。在此,我们在硫化铅量子点 (PbS QD) 后电池的帮助下成功实现了基于 Sb2S3 的 2T-TSC。首先,通过使用 1,2-乙二醇封端的量子点作为 HTL,Sb2S3 SJSC 的功率转换效率 (PCE) 达到 7.82%,在全无机 Sb2S3 SC 报告中名列前茅。更重要的是,开发了一个高效的 Au 复合层来桥接两个子电池,并获得子电池开路电压之和 (1.128 V),电压损失率最小约为 0.8%。通过光学模拟和器件研究对子电池吸收体厚度进行调制后,冠军器件实现了光电流匹配,其 2T-TSC PCE 达到 10.92%,在基于 Sb2S3 的 TSC 中报告值最高。我们的工作为基于 Sb2S3 的 2T-TSC 打开了大门,并有望引发对全无机锑基 TSC 的热门研究兴趣。

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