High efficiency planar-type perovskite solar cells with negligible hysteresis using EDTA-complexed SnO2

被引:0
作者
Dong Yang
Ruixia Yang
Kai Wang
Congcong Wu
Xuejie Zhu
Jiangshan Feng
Xiaodong Ren
Guojia Fang
Shashank Priya
Shengzhong (Frank) Liu
机构
[1] Shaanxi Normal University,Key Laboratory of Applied Surface and Colloid Chemistry, Ministry of Education; Shaanxi Engineering Lab for Advanced Energy Technology, School of Materials Science and Engineering
[2] Center for Energy Harvesting Materials and System (CEHMS),Key Laboratory of Artificial Micro
[3] Virginia Tech, and Nano
[4] Wuhan University,structures of Ministry of Education of China, School of Physics and Technology
[5] Chinese Academy of Sciences,Dalian National Laboratory for Clean Energy, iChEM, Dalian Institute of Chemical Physics
来源
Nature Communications | / 9卷
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摘要
Even though the mesoporous-type perovskite solar cell (PSC) is known for high efficiency, its planar-type counterpart exhibits lower efficiency and hysteretic response. Herein, we report success in suppressing hysteresis and record efficiency for planar-type devices using EDTA-complexed tin oxide (SnO2) electron-transport layer. The Fermi level of EDTA-complexed SnO2 is better matched with the conduction band of perovskite, leading to high open-circuit voltage. Its electron mobility is about three times larger than that of the SnO2. The record power conversion efficiency of planar-type PSCs with EDTA-complexed SnO2 increases to 21.60% (certified at 21.52% by Newport) with negligible hysteresis. Meanwhile, the low-temperature processed EDTA-complexed SnO2 enables 18.28% efficiency for a flexible device. Moreover, the unsealed PSCs with EDTA-complexed SnO2 degrade only by 8% exposed in an ambient atmosphere after 2880 h, and only by 14% after 120 h under irradiation at 100 mW cm−2.
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