钙钛矿(结构)
光伏
磁滞
材料科学
电阻抗
电容
光电子学
介电谱
光伏系统
负阻抗变换器
化学物理
电感
工作(物理)
等效电路
离子键合
电压
重组
时间常数
钙钛矿太阳能电池
电感器
太阳能电池
不对称
开路电压
光谱学
凝聚态物理
分析化学(期刊)
电荷(物理)
工程物理
降级(电信)
恒压
充电控制
电流(流体)
作者
Elnaz Ghahremani Rad,Enrique H Balaguera,Abraha Tadese Gidey,Katherine Latosinsky,Juan Bisquert,Alexander R. Uhl
标识
DOI:10.1021/acsenergylett.5c03788
摘要
Beyond recombination processes, a major contributor to ion-induced efficiency losses in perovskite solar cells is charge collection failures, associated with a pronounced reduction in short-circuit current density, the appearance of current–voltage hysteresis with steep slope around 0 V, and negative capacitance effects in impedance measurements. This work presents a physical model that differentiates degradation pathways induced by mobile ions, enabling a unified interpretation of electrical responses. A central feature in the multifaceted low-frequency impedance region is the double inductor response, serving as a fingerprint of ion-driven degradation with combined action in recombination and charge collection. Extracted time constants reveal how their interplay reshapes impedance responses and current–voltage curves during aging, which serve as unequivocal markers of the dominant factors affecting operational stability. Our results establish the double-inductor behavior as a key spectroscopic signature of device degradation, adding a new feature to the catalogue of anomalous phenomena in perovskite devices.
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