Record‐Efficiency Printable Hole‐Conductor‐Free Mesoscopic Perovskite Solar Cells Enabled by the Multifunctional Schiff Base Derivative
作者:Kai Chen, Xufeng Xiao, Jiale Liu, Jianhang Qi, Qiaojiao Gao, Yongming Ma, Yanjie Cheng, Anyi Mei, Hongwei Han · 发表于:Advanced Materials · 年份:2024 · DOI:10.1002/adma.202401319 · 被引用次数:39 · 研究领域:Perovskite Materials and Applications、Conducting polymers and applications、Organic Light-Emitting Diodes Research
Abstract Tailoring multifunctional additives for performing interfacial modifications, improving crystallization, and passivating defects is instrumental for the fabrication of efficient and stable perovskite solar cells (PSCs). Here, a Schiff base derivative, (chloromethylene) dimethyliminium chloride (CDCl), is introduced as an additive to modify the interface between the mesoporous TiO 2 electron transport layer and the MAPbI 3 light absorber during the annealing process. CDCl chemically links to TiO 2 and MAPbI 3 through coordination and hydrogen bonding, respectively, and results in the construction of fast electron extraction channels. CDCl also optimizes the energy‐level alignment of the TiO 2 /MAPbI 3 heterojunction and improves the pore‐filling and crystallization of MAPbI 3 in the mesoscopic scaffold, which inhibits nonradiative recombination and eliminates open‐circuit voltage losses. As a result, an impressive power conversion efficiency of 19.74%, which is the best one ever reported, is obtained for printable carbon‐based hole‐conductor‐free PSCs based on MAPbI 3 .