光致变色
材料科学
钙钛矿(结构)
持续性
分子
纳米技术
化学工程
工程物理
有机化学
生态学
生物
工程类
化学
作者
Tianxiang Zhou,Wenshi Zhao,Zhiteng Wang,Rui Li,Xiaolong Feng,Yachao Du,Lei Zhu,Junqi Zhang,Geping Yin,Kuo Wang,Haiqing Yu,Yang Liu,Qingwen Tian,Shengzhong Liu
标识
DOI:10.1002/aenm.202404850
摘要
Abstract Most strategies only focus on passivating dynamic defects on the surfaces of perovskite films or addressing Pb leakage issues separately, lacking comprehensive solutions. In view of this, photochromic compound 1,3,3‐trimethylindolinonaphthospirooxazine (SO) and its photoisomerization product (MC) are innovatively introduced into inorganic perovskite solar cells (IPSCs). Under light irradiation, the distinctive transformation characteristics of photoisomeric molecules are leveraged to effectively and continuously passivate dynamic defects. Meanwhile, ring‐opening MC structure provides two anchoring sites, which form a stable chelating ring with undercoordinated Pb 2+ , thereby mitigating the risk of Pb leakage. Both theoretical analyses and experimental findings indicate that MC molecules expose more active sites due to their open molecular structure under illumination, thus tightly binding to undercoordinated ions (I − and Pb 2+ ) in films. The MC passivation treatment exhibits an impressive power conversion efficiency (PCE) of 22.04%, while also improving hydrophobicity, UV resistance, and biocompatibility of films. This approach not only presents a new perspective for boosting performance and stability of IPSCs but also takes an important step toward promoting their development in environmental friendliness and sustainability.
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