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Interfacial Energy Level Alignment and Defect Passivation by Using a Multifunctional Molecular for Efficient and Stable Perovskite Solar Cells
Authors:Yong-Chun Ye  Li Chen  Xian-Min Chen  Chun-Ying Ma  Bing-Hao Lv  Jiang-Ying Wang  Wei-Dong Dou  Chu Zhang  Ting-Li Ma  Jian-Xin Tang
Affiliation:1. College of Materials and Chemistry, China Jiliang University, Hangzhou, Zhejiang, 310018 China;2. Institute of Functional Nano & Soft Materials (FUNSOM), Collaborative Innovation Center of Suzhou Nano Science & Technology, Soochow University, Suzhou, Jiangsu, 215123 China;3. Laboratory of Low-dimensional Carbon Materials and Department of Physics, Shaoxing University, Shaoxing, Zhejiang, 312000 China
Abstract:Tin oxide (SnO2) is currently the dominating electron transport material (ETL) used in state-of-the-art perovskite solar cells (PSCs). However, there are amounts of defects distributed at the interface between ETL and perovskite to deteriorate PSC performance. Herein, a molecule bridging layer is built by incorporating 2,5-dichloroterephthalic acid (DCTPA) into the interface between the SnO2 and perovskites to achieve better energy level alignment and superior interfacial contact. The multifunctional molecular bridging layer not only can passivate the trap states of Sn dangling bonds and oxygen vacancies resulting in improved conductivity and the electron extraction of SnO2 but also can regulate the perovskite crystal growth and reduce defect-assisted nonradiative recombination due to its strong interaction with undercoordinated lead ions. As a result, the DCTPA-modified PSCs achieve champion power conversion efficiencies (PCEs) of 23.25% and 20.23% for an active area of 0.15 cm2 device and 17.52 cm2 mini-module, respectively. Moreover, the perovskite films and PSCs based on DCTPA modification show excellent long-term stability. The unencapsulated target device can maintain over 90% of the initial PCE after 1000 h under ambient air. This strategy guides design methods of molecule bridging layer at the interface between SnO2 and perovskite to improve the performance of PSCs .
Keywords:defect passivation  energy level alignment  molecular bridging layer  perovskite solar cells
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