Evolution of performance parameters of perovskite solar cells with current-voltage scan frequency

Fuente: arXiv
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Autores principales: Balaguera, Enrique H., Bisquert, Juan
Formato: Preprint
Publicado: 2024
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author Balaguera, Enrique H.
Bisquert, Juan
author_facet Balaguera, Enrique H.
Bisquert, Juan
contents Current-voltage measurements are a standard testing protocol to determine the efficiency of any solar cell. However, perovskite solar cells display significant kinetic phenomena that modify the performance at several time scales, due to hysteresis, internal capacitances, and related mechanisms. Here, we develop a method to analyze the current-voltage curves by using large amplitude sinusoids as the excitation waveforms, specifically addressed to determine the influence of cycling frequency on the performance parameters. We solve a system of equations representative of charge collection and recombination, that provide the frequency-dependent dynamical behavior of the internal ion-controlled surface recombination processes that cause open-circuit voltage variations often observed in high performance devices. We analyze several reported experimental data, and we feature the key parameters governing the evolution of hysteresis phenomena as the scan speed is increased in relation to Impedance Spectroscopy.
format Preprint
id arxiv_https___arxiv_org_abs_2407_01721
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Evolution of performance parameters of perovskite solar cells with current-voltage scan frequency
Balaguera, Enrique H.
Bisquert, Juan
Applied Physics
Current-voltage measurements are a standard testing protocol to determine the efficiency of any solar cell. However, perovskite solar cells display significant kinetic phenomena that modify the performance at several time scales, due to hysteresis, internal capacitances, and related mechanisms. Here, we develop a method to analyze the current-voltage curves by using large amplitude sinusoids as the excitation waveforms, specifically addressed to determine the influence of cycling frequency on the performance parameters. We solve a system of equations representative of charge collection and recombination, that provide the frequency-dependent dynamical behavior of the internal ion-controlled surface recombination processes that cause open-circuit voltage variations often observed in high performance devices. We analyze several reported experimental data, and we feature the key parameters governing the evolution of hysteresis phenomena as the scan speed is increased in relation to Impedance Spectroscopy.
title Evolution of performance parameters of perovskite solar cells with current-voltage scan frequency
topic Applied Physics
url https://arxiv.org/abs/2407.01721