Bai Dongliang, Zheng Dexu, Yang Shaoan, Yu Fengyang, Zhu Xuejie, Peng Lei, Wang Likun, Liu Jishuang, Yang Dong, Liu Shengzhong Frank
Key Laboratory of Applied Surface and Colloid Chemistry, Ministry of Education, Shaanxi Key Laboratory for Advanced Energy Devices, Shaanxi Engineering Lab for Advanced Energy Technology, School of Materials Science and Engineering, Shaanxi Normal University Xi'an 710119 China.
China National Nuclear Power Co., Ltd. Beijing 100097 China.
RSC Adv. 2023 Sep 22;13(40):28097-28103. doi: 10.1039/d3ra00809f. eCollection 2023 Sep 18.
Defects formed by halide ion escape and wettability of the perovskite absorber are essential limiting factors in achieving high performance of perovskite solar cells (PSCs). Herein, a series of ionic organic modulators are designed to contain halide anions to prevent defect formation and improve the surface tension of the perovskite absorber. It was found that the surface modulator containing Br anions is the most effective one due to its capability in bonding with the undercoordinated Pb ions to reduce charge recombination. Moreover, this surface modulator effectively creates a suitable energy level between the perovskite and hole transport layer to promote carrier transfer. In addition, the surface modulator forms a chemisorbed capping layer on the perovskite surface to improve its hydrophobicity. As a result, the efficiency of PSCs based on surface modulators containing Br anion enhances to 23.32% from 21.08% of the control device. The efficiency of unencapsulated PSCs with a surface modulator retains 75.42% of its initial value under about 35% humidity stored in the air for 28 days, while the control device only maintained 44.49% of its initial efficiency. The excellent stability originates from the hydrophobic perovskite surface after capping the surface modulator.
卤离子逃逸形成的缺陷以及钙钛矿吸收层的润湿性是实现高性能钙钛矿太阳能电池(PSC)的关键限制因素。在此,设计了一系列含有卤离子的离子型有机调节剂,以防止缺陷形成并提高钙钛矿吸收层的表面张力。研究发现,含Br阴离子的表面调节剂最为有效,因为它能够与配位不足的Pb离子结合,从而减少电荷复合。此外,这种表面调节剂有效地在钙钛矿和空穴传输层之间创造了合适的能级,以促进载流子转移。另外,表面调节剂在钙钛矿表面形成化学吸附的覆盖层以提高其疏水性。结果,基于含Br阴离子表面调节剂的PSC效率从对照器件的21.08%提高到了23.32%。带有表面调节剂的未封装PSC在空气中约35%湿度下储存28天后,其效率保留了初始值的75.42%,而对照器件仅保持了初始效率的44.49%。优异的稳定性源于覆盖表面调节剂后钙钛矿表面的疏水性。