Schiller Andreas, Jenatsch Sandra, Blülle Balthasar, Torre Cachafeiro Miguel Angel, Ebadi Firouzeh, Kabir Nasim, Othman Mostafa, Wolff Christian Michael, Hessler-Wyser Aïcha, Ballif Christophe, Tress Wolfgang, Ruhstaller Beat
Fluxim AG, Katharina-Sulzer-Platz 2, 8400 Winterthur, Switzerland.
Institute of Computational Physics, Zurich University of Applied Sciences (ZHAW), Technikumstrasse 71, 8401 Winterthur, Switzerland.
J Phys Chem Lett. 2024 Nov 14;15(45):11252-11258. doi: 10.1021/acs.jpclett.4c02403. Epub 2024 Nov 3.
Whether illumination influences the ion conductivity in lead-halide perovskite solar cells containing iodide halides has been an ongoing debate. Experiments to elucidate the presence of a photoconductive effect require special devices or measurement techniques and neglect possible influences of the enhanced electronic charge concentrations. Here, we assess the electronic-ionic charge transport using drift-diffusion simulations and show that the well-known increase in capacitance at low frequencies under illumination is caused by electronic currents that are amplified due to the screening of the alternating electric field by the ions. We propose a novel characterization technique to detect a potential photoinduced increase in ionic conductivity based on capacitance measurements on fully integrated devices. The method is applied to a range of perovskite solar cells with different active layer materials. Remarkably, all measured samples show a clear signature of photoenhanced ion conductivity, posing fundamental questions on the underlying nature of the photosensitive mechanism.
光照是否会影响含碘化物的铅卤化物钙钛矿太阳能电池中的离子导电性,这一问题一直存在争议。阐明光电导效应存在的实验需要特殊的器件或测量技术,并且忽略了增强的电子电荷浓度可能产生的影响。在这里,我们使用漂移扩散模拟来评估电子 - 离子电荷传输,并表明光照下低频电容的众所周知的增加是由电子电流引起的,这些电子电流由于离子对交变电场的屏蔽而被放大。我们提出了一种新颖的表征技术,基于对完全集成器件的电容测量来检测离子导电性潜在的光致增加。该方法应用于一系列具有不同活性层材料的钙钛矿太阳能电池。值得注意的是,所有测量样品都显示出光增强离子导电性的明显特征,这对光敏机制的潜在本质提出了基本问题。