Guo Xing, Su Jie, Lin Zhenhua, Wang Xinhao, Wang Qingrui, Zeng Zebing, Chang Jingjing, Hao Yue
State Key Discipline Laboratory of Wide Band Gap Semiconductor Tecchnology, Shaanxi Joint Key Laboratory of Graphene, School of Microelectronics, Xidian University, 2 South Taibai Road, Xi'an 710071, China.
Advanced Interdisciplinary Research Center for Flexible Electronics, Xidian University, 2 South Taibai Road, Xi'an 710071, China.
iScience. 2021 Mar 5;24(4):102276. doi: 10.1016/j.isci.2021.102276. eCollection 2021 Apr 23.
Organic-inorganic lead halide perovskite solar cells (PSCs) have received much attention in the last few years due to the high power conversion efficiency (PCE). Generally, perovskite/charge transport layer interface and the defects at the surface and grain boundaries of perovskite film are important factors for the efficiency and stability of PSCs. Herein, we employ an extended benzopentafulvalenes compound (FDC-2-5Cl) with electron-withdrawing pentachlorophenyl group and favorable energy level as charge transfer molecule to treat the perovskite surface. The FDC-2-5Cl with pentachlorophenyl group could accept the electrons from perovskite as a p-type dopant, and passivate the surface defects. The p-type doping effect of FDC-2-5Cl on perovskite surface induced band bending at perovskite surface, which improves the hole extraction from perovskite. As a result, the PSC with FDC-2-5Cl treatment achieves a PCE of 21.16% with an enhanced open-circuit voltage ( ) of 1.14 V and outstanding long-term stability.
近年来,有机-无机铅卤化物钙钛矿太阳能电池(PSC)因其高功率转换效率(PCE)而备受关注。通常,钙钛矿/电荷传输层界面以及钙钛矿薄膜表面和晶界处的缺陷是影响PSC效率和稳定性的重要因素。在此,我们采用一种带有吸电子五氯苯基且能级合适的扩展苯并戊富瓦烯化合物(FDC-2-5Cl)作为电荷转移分子来处理钙钛矿表面。带有五氯苯基的FDC-2-5Cl可以作为p型掺杂剂接受来自钙钛矿的电子,并钝化表面缺陷。FDC-2-5Cl在钙钛矿表面的p型掺杂效应导致钙钛矿表面能带弯曲,从而改善了从钙钛矿中提取空穴的能力。结果,经过FDC-2-5Cl处理的PSC实现了21.16%的功率转换效率,开路电压( )提高到1.14 V,并且具有出色的长期稳定性。