串联
材料科学
能量转换效率
光电子学
无定形固体
热的
光伏系统
纳米技术
热化
热稳定性
导电体
带隙
工作(物理)
高效能源利用
电效率
能量转换
太阳能电池
太阳能
吸附
透明导电膜
发电
功率(物理)
咔唑
热能
有机太阳能电池
太阳能电池效率
聚合物太阳能电池
石墨烯
作者
Yifan Chen,Chunyu Xu,Zhou Liu,Ye Xu,Anqi Lv,Ming Luo,Zi Wang,Dongrui Jiang,Yi Mo,Hui Li,Rui He,Hongjiang Li,Rui Xia,Xinjun He,Qianqian Wang,Donghao Miao,L. Gao,Jamin Xie,Guangtao Yang,Danni Yu
摘要
Perovskite/silicon tandem solar cells (TSCs) hold great promise for next-generation photovoltaics, yet uneven coverage and thermal instability of self-assembled hole-selective contacts hinder their commercialization. Here, we introduce ZF6, an amorphous molecular contact with an asymmetric π-extended structure, featuring a dimethylindenocarbazole core and carbazole substitution. ZF6 exhibits rapid and robust adsorption on transparent conductive substrates, achieving uniform coverage and exceptional thermal stability. Its optimal energy level alignment and enhanced carrier extraction efficiency are compatible with various bandgap perovskites. ZF6-based double-junction perovskite/silicon TSCs achieve a reverse-scan power conversion efficiency (PCE) of 34.02% (certified 32.81% at NREL) with improved operational stability, retaining over 97% and 87% of initial efficiency after 1000 h of maximum power point tracking at 45°C and 85°C, respectively. We also fabricate triple-junction perovskite/perovskite/silicon TSCs, achieving a certified steady-state PCE of 30.42%, which represents the highest-performing triple-junction perovskite-based TSCs reported to date. This work establishes a novel design strategy for robust molecular contacts, advancing efficient and durable perovskite-based tandem photovoltaics.
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