材料科学
钙钛矿(结构)
串联
光电子学
氧化铟锡
能量转换效率
堆积
电极
光活性层
带隙
图层(电子)
有机太阳能电池
溅射
纳米技术
化学工程
薄膜
聚合物太阳能电池
聚合物
复合材料
化学
工程类
物理化学
有机化学
作者
Zongwen Ma,Yiman Dong,Ruyue Wang,Zhiyang Xu,Minghua Li,Zhan’ao Tan
标识
DOI:10.1002/adma.202307502
摘要
Rational selection and design of recombination electrodes (RCEs) are crucial to enhancing the power conversion efficiency (PCE) and stability of monolithic tandem solar cells (TSCs). Sputtered indium tin oxide (ITO) with high conductivity and excellent transmittance is introduced as RCE in perovskite/organic TSCs. To prevent high-energy ITO particles destroy the underlying material during sputtering, dual-functional transport and protective layer (C1) is employed. The styryl group in C1 can be thermally crosslinked to serve as a sputtering protective layer. Meanwhile, the conjugated phenanthroline skeleton in C1 shows high electron mobility and hole blocking capability to promote the electron transport process at the interfaces and effectively reduce charge accumulation. Monolithic perovskite/organic TSC with high PCE of 24.07% and excellent stability is demonstrated by stacking a 1.77 eV bandgap perovskite layer and a 1.35 eV bandgap organic active layer. This strategy provides new insights for overcoming the fundamental efficiency limits of single-junction devices and promotes the further development of TSC devices.
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