材料科学
串联
钝化
结晶
钙钛矿(结构)
能量转换效率
纳米技术
冠军
光电子学
太阳能电池
光伏系统
微技术
混合太阳能电池
播种
工作(物理)
工程物理
堆栈(抽象数据类型)
路易斯酸
作者
Yuqi Bao,Jie Zeng,Xia Lei,Deng Wang,Guanshui Xie,Yintai Xu,Liu Z,Peide Zhu,Wenbo Peng,Yì Wáng,Longbin Qiu,X Wang,Yong Zhang,Baomin Xu
摘要
ABSTRACT All‐perovskite tandem solar cells (APTSCs) have attracted considerable research interest in recent years due to their higher theoretical efficiencies and broader spectral coverage. Nonetheless, as the bottom narrow‐bandgap cell in APTSCs, tin‐lead (Sn‐Pb) hybrid perovskite solar cells (PSCs) still face challenges of high defect density and poor crystallization morphology, which hinder the further improvement of device performance and long‐term stability. This work proposes a Lewis hard‐basicity amplification strategy that provides additional potential hard‐acid binding sites and promotes coordination with Sn 2+ , thereby enabling defect passivation and regulating crystallization. Ultimately, we achieved a champion power conversion efficiency (PCE) of 23.71% for single‐junction Sn‐Pb PSCs. By integrating 1.77 eV wide‐bandgap perovskites with Sn‐Pb hybrid perovskites, we further fabricated APTSCs with a champion PCE of 29.44%. Both devices retain approximately 80% of their initial efficiency after 1080 h of continuous operation under one‐sun illumination.
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