材料科学
钙钛矿(结构)
光致发光
能量转换效率
卤化物
载流子寿命
俘获
图层(电子)
光电子学
纳米技术
化学工程
硅
化学
无机化学
工程类
生物
生态学
作者
Guijun Zhang,Qiong Wei,Guangsheng Liu,Qi Li,Junlin Lu,Mehri Ghasemi,Juan Wang,Yu Yang,Baohua Jia,Xiaoming Wen
标识
DOI:10.1021/acsami.3c16908
摘要
The dynamic defect tolerance under light soaking is a crucial aspect of halide perovskites. However, the underlying physics of light soaking remains elusive and is subject to debate, exhibiting both positive and negative effects. In this investigation, we demonstrated that surface defects in perovskite films significantly impact the performance and stability of perovskite solar cells, closely correlated with light soaking behaviors. Removing the top surface layer through adhesive tape, the surface defect density noticeably decreases, leading to enhanced photoluminescence (PL) efficiency, prolonged carrier lifetime, and higher conductivity. Consequently, the power conversion efficiency (PCE) of solar cells improves from 17.70% to 20.5%. Furthermore, we confirmed a positive correlation between surface defects and the light soaking effect. Perovskite films with low surface defects surprisingly exhibit a 3-fold increase in PL intensity and an 85% increase in carrier lifetime under 500 s of continuous illumination at an intensity of 100 mW/cm2. Beyond the conventional strategy of suppressing defect trapping, we propose increasing the capability of dynamic defect tolerance as an effective strategy to enhance the optoelectronic properties and performance of perovskite solar cells.
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