Woo Sanguk, Kim Ye Won, Jung Hyein, Yun Yeonghun, Choi Hangyeol, Lee Sangwook, Yoon Yohan
Department of Materials Engineering, Korea Aerospace University, Goyang, 10540, Republic of Korea.
School of Materials Science & Engineering, Kyungpook National University, Daegu, 41566, Republic of Korea.
Small Methods. 2024 Jan;8(1):e2300650. doi: 10.1002/smtd.202300650. Epub 2023 Oct 6.
In this work, a novel real-time current-voltage (J-V) absorbance spectroscopy (RTJAS) setup is introduced for directly observing halide segregation in mixed halide perovskite solar cells under broadband light illumination, simulating solar exposure. The setup incorporates a broadband light source calibrated to one sun irradiation and a CMOS camera for simultaneous capture of all diffracted wavelengths. J-V measurements are performed concurrently with absorbance spectra collection, enabling in situ analysis of light-induced degradation due to halide segregation, including bandgap shifts and cell performance data. Comparison of photoluminescence measurements with RTJAS data reveals differing rates of bandgap decrease, underscoring the advantages of real-time measurement techniques. The work highlights the importance of accounting for experimental conditions, such as humidity and voltage injection, which can accelerate halide segregation, ultimately emphasizing the need for careful consideration of experimental conditions to accurately characterize perovskite solar cell behavior under realistic conditions.
在这项工作中,引入了一种新型的实时电流-电压(J-V)吸收光谱(RTJAS)装置,用于在宽带光照射下直接观察混合卤化物钙钛矿太阳能电池中的卤化物偏析,模拟太阳照射。该装置包括一个校准为一个太阳辐照度的宽带光源和一个用于同时捕获所有衍射波长的CMOS相机。J-V测量与吸收光谱采集同时进行,能够对卤化物偏析引起的光致降解进行原位分析,包括带隙移动和电池性能数据。光致发光测量与RTJAS数据的比较揭示了不同的带隙减小速率,突出了实时测量技术的优势。这项工作强调了考虑实验条件(如湿度和电压注入)的重要性,这些条件会加速卤化物偏析,最终强调了在实际条件下准确表征钙钛矿太阳能电池行为时仔细考虑实验条件的必要性。