'Ion-freeze' efficiency in perovskite solar cells: time scales for ion immobilization.

EES solar Pub Date : 2025-09-04 DOI:10.1039/d5el00137d
Enrique H Balaguera, F Javier Marinelli Pra, Chittaranjan Das, Lorenzo Torresani, Juan Bisquert, Michael Saliba
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Abstract

It is essential to shed light on the complex multiscale dynamics of mobile ions in perovskite solar cells for developing efficiency testing protocols, gaining a deeper understanding of the degradation mechanisms, improving long-term stability, and, ultimately, driving the commercialization of this technology. This study provides characteristic times for inhibiting the presence of mobile ions in efficiency measurements, enabling a comparison between 'ion-freeze' and steady-state efficiencies to quantify ion-induced degradation losses. Using current transient analysis during current-voltage measurements for a wide range of sweep rates, we achieve precise time-scale mapping of the complex ionic landscape of perovskites, spanning from ion immobilization (at time scales much shorter than the diffusion rate) to the equilibrium situation, encompassing the ubiquitous hysteresis effects for which we define a scan-rate range of occurrence. We corroborate the theory by using Impedance Spectroscopy. Our study provides valuable information about the intricate ionic dynamics in the context of classical current-voltage measurements, supporting the integration of these complementary experiments into the foundational characterization practices of the perovskite photovoltaic community.

钙钛矿太阳能电池的“离子冻结”效率:离子固定的时间尺度。
阐明钙钛矿太阳能电池中移动离子的复杂多尺度动力学对于开发效率测试协议,深入了解降解机制,提高长期稳定性,并最终推动该技术的商业化至关重要。该研究提供了在效率测量中抑制移动离子存在的特征时间,使“离子冻结”和稳态效率之间的比较能够量化离子引起的降解损失。在大范围扫描速率的电流-电压测量期间使用电流瞬态分析,我们实现了钙钛矿复杂离子景观的精确时间尺度映射,从离子固定(时间尺度远短于扩散速率)到平衡状态,包括无处不在的滞后效应,我们定义了扫描速率范围的发生。我们用阻抗谱法证实了这一理论。我们的研究提供了关于经典电流-电压测量背景下复杂离子动力学的宝贵信息,支持将这些互补实验整合到钙钛矿光伏社区的基础表征实践中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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