钙钛矿(结构)
偶极子
接口(物质)
材料科学
分子
化学物理
光电子学
化学
结晶学
量子力学
物理
吉布斯等温线
作者
Hongze Wang,Junbo Wang,Qingyun He,Jingxi Chang,Shaoyu Chen,Chongyu Zhong,Mengyang Wu,Xiangru Zhao,Haoyu Chen,Qiushuang Tian,Mubai Li,Jingya Lai,Yingguo Yang,Renzhi Li,Bo Wu,Wei Huang,Tianshi Qin,Fangfang Wang
标识
DOI:10.1002/anie.202404289
摘要
Abstract Interfacial engineering of perovskite films has been the main strategies in improving the efficiency and stability of perovskite solar cells (PSCs). In this study, three new donor‐acceptor (D–A)‐type interfacial dipole (DAID) molecules with hole‐transporting and different anchoring units are designed and employed in PSCs. The formation of interface dipoles by the DAID molecules on the perovskite film can efficiently modulate the energy level alignment, improve charge extraction, and reduce non‐radiative recombination. Among the three DAID molecules, TPA‐BAM with amide group exhibits the best chemical and optoelectrical properties, achieving a champion PCE of 25.29 % with the enhanced open‐circuit voltage of 1.174 V and fill factor of 84.34 %, due to the reduced defect density and improved interfacial hole extraction. Meanwhile, the operational stability of the unencapsulated device has been significantly improved. Our study provides a prospect for rationalized screening of interfacial dipole materials for efficient and stable PSCs.
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