Yadegari Leila, Rastegar Moghadamgohari Zahra, Zarabinia Nazila, Rasuli Reza
Department of Physics, Faculty of Science, University of Zanjan, P.O. Box 45371-38791, Zanjan, Iran.
Sci Rep. 2023 Aug 18;13(1):13497. doi: 10.1038/s41598-023-40837-8.
The effect of moisture and heat are important challenges in perovskite solar cells (PSCs). Herein we studied the performance of triple-cation PSCs in different operating environmental conditions. Humidified cells exhibited a hopeful character by increasing the open-circuit voltage (V) and short-circuit current density (J) to 940 mV and 22.85 mA cm with a power conversion efficiency (PCE) of 14.34%. In addition, further analyses showed that hysteresis index and charge transfer resistance decrease down to 0.4% and 1.67 kΩ. The origin of superior stability is ion segregation to the interface, which removes the antisite defect states. Finally, the effect of operating temperature and trap density on structure and performance was also studied systematically.
湿度和热量的影响是钙钛矿太阳能电池(PSC)面临的重要挑战。在此,我们研究了三阳离子PSC在不同运行环境条件下的性能。加湿后的电池表现出了良好的特性,开路电压(V)和短路电流密度(J)分别增加到940 mV和22.85 mA/cm²,功率转换效率(PCE)为14.34%。此外,进一步分析表明,滞后指数和电荷转移电阻分别降至0.4%和1.67 kΩ。卓越稳定性的根源在于离子向界面的偏析,这消除了反位缺陷态。最后,还系统研究了工作温度和陷阱密度对结构和性能的影响。