同种类的
离解(化学)
材料科学
化学物理
钙钛矿(结构)
工程物理
物理
化学
统计物理学
物理化学
结晶学
作者
Na Liu,Fan Xu,Jin Jing,Jiahao Shi,Tinglu Song,Ning Zhou,Yang Bai,Yuhong Jiang,Mingran Du,Lei Chen,О. С. Кулакович,Shukui Li,Shuai Chang,Cheng Zhu,Qi Chen
标识
DOI:10.34133/energymatadv.0187
摘要
Quasi-2-dimensional (quasi-2D) perovskite solar cells (PSCs) have attracted much attention due to their superior stability. However, they suffer from inhomogeneous phase distributions and inefficient exciton dissociations, which hinder charge transport and increase energy loss. Herein, a novel chloride-contained aminidium molecule with Lewis-base properties, butyramidinium chloride (BI), was incorporated into quasi-2D PSCs to improve their performance. Chemical interactions between BI and [PbI 6 ] 4− octahedra were identified, which optimized the crystallization of 2D perovskite. The resultant film showed a favorable crystal orientation and a homogenized energy landscape with a reduced fraction of low- n 2D phases. Moreover, temperature-dependent photoluminescence results indicate reduced exciton binding energy and enhanced charge dissociation after adding BI. Consequently, quasi-2D PSCs ( n = 4) with BI demonstrated a 25% increase in efficiency compared to control devices, attributed to the enhancement of the solar cell’s open-circuit voltage ( V OC ) and fill factor. These results underscore the potential of amidinium-based molecules to improve quasi-2D PSC performance.
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