光伏
存水弯(水管)
钙钛矿(结构)
材料科学
分布(数学)
工程物理
物理
光伏系统
电气工程
工程类
化学
结晶学
数学
气象学
数学分析
作者
Jing Chen,Guangpeng Zhu,Kai‐Li Wang,Chun‐Hao Chen,Tian‐Yu Teng,Yu Xia,Tao Wang,Zhao‐Kui Wang
出处
期刊:eScience
[Elsevier BV]
日期:2024-10-09
卷期号:5 (2): 100326-100326
被引量:22
标识
DOI:10.1016/j.esci.2024.100326
摘要
To gain a deep understanding and address key issues in perovskite photovoltaics, such as power conversion efficiency (PCE) and long-term stability, defect passivation and analysis of the device performance are required. Here, we proposed a non-contact characterization technique named scanning photocurrent measurement system (SPMS) for device surface detection, having conducted signal analysis and method adjustments based on perovskite photovoltaic devices. This technique enables the monitoring of minority carriers in the device, allowing for the investigation of carrier behavior based on photocurrent signals. By integrating SPMS with thermal conductance spectroscopy (TAS) and drive-level capacitance profiling (DLCP), we further simulated a spatial three-dimensional (3D) distribution of trap states in the device and analyzed the distribution of trap states matched with energy space. Through extensive case studies, we have validated the universality and accuracy of this method. The integration of trap state characterization techniques provides strong support for targeted defect passivation and performance evaluation of perovskite photovoltaic devices, yielding a highly efficient perovskite solar cell with PCE as high as 25.74%. ● A full-dimensional image involving energy and spatial distributions of trap states in perovskite photovoltaics is successfully drawn. ● Based on a deep understanding of traps state distribution and effective passivation, the fabricated perovskite photovoltaics delivered an efficiency as high as 25.74%.
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