DOE OSTI · 2570091
Light induced ion migration studies in perovskite solar cell using nonlinear impedance spectroscopy
Abstract
Complex interactions between mobile ions and charge carriers in perovskite solar cells (PSCs) make it challenging to fully understand their dynamic interplay. Exposure to light further complicates these interactions, altering the system’s dynamics and inducing nonlinear effects that lead to changes in the J−V curve. Understanding these effects is crucial for improving the operational stability of PSCs. Impedance spectroscopy (IS) is a powerful technique for evaluating relaxation processes in the frequency domain; however, it is limited in capturing nonlinear contributions. Here, in this work, nonlinear impedance spectroscopy (NLIS) is employed to analyze the higher harmonic response to AC perturbation, both in the dark and after short-term light exposure. A shift in the low-frequency (LF) higher harmonic peak is observed after open-circuit light exposure, attributed to an altered electric field suggesting ion re-distribution, whereas closed-circuit exposure shows no LF shift, indicating minimal ion movement. Additionally, light exposure reduces higher-order admittance, more notably in open-circuit conditions, suggesting decreased recombination. Temperature-dependent analysis was conducted to characterize the activation energy of migrating species, identifying iodide as the dominant migrating ion.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
White, Matthew S. [University of Vermont, Burlington, VT (United States)], Paramadam, Sanish [University of Vermont, Burlington, VT (United States)], Howe, Benjamin W. [University of Vermont, Burlington, VT (United States)], Abate, Seid Yimer [University of Vermont, Burlington, VT (United States)], Headrick, Randall [University of Vermont, Burlington, VT (United States)]. 2025-06-24. Light induced ion migration studies in perovskite solar cell using nonlinear impedance spectroscopy. https://doi.org/10.1021/acsaem.5c00672
Cite the original work for its findings. Save a collection to share your selection of sources.