钙钛矿(结构)
带隙
材料科学
光电子学
纳米技术
化学
结晶学
作者
Yixin Luo,Yuan Tian,Ke‐Qing Zhao,Weiping Mao,Chen Liu,Jiahui Shen,Zhendong Cheng,Caner Değer,Xiaohe Miao,Zhongwei Zhang,Xuechun Sun,Libing Yao,Xu Zhang,Pengju Shi,Donger Jin,J.C. Deng,Mengyuan Tian,İlhan Yavuz,Na Dong,Ruzhang Liu
标识
DOI:10.1038/s41467-025-59896-8
摘要
Organic molecules that serve as hole-selective contacts, known as self-assembled monolayers (SAMs), play a pivotal role in ensuring high-performance perovskite photovoltaics. Optimal energy alignment between the SAM and the perovskite is essential for desired photovoltaic performance. However, many SAMs are studied in optimal-bandgap perovskites, with limited energy level modification specifically catering to wide-bandgap perovskites. Herein, we demonstrate that the energy level of SAMs can be systematically tuned in a stepwise manner via inductive effects in the conjugated moieties, enabling rational design tailored for specific perovskite bandgaps. The resulting WBG perovskite device based on our tuned SAM achieved a power conversion efficiency (PCE) of 22.8%. Integration with crystalline silicon TOPCon subcells further enabled the construction of a perovskite/TOPCon tandem device with a PCE of 31.1% (certified 30.9%).
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