Abstract
Perovskite mini-modules with two ETL compositions—thick ETL1 (LiF/C 60 /BCP) and thin ETL2 (LiF/C 60 /LiF)—were measured outdoors for over three years to assess long-term performance. Perovskite mini-modules with two different electron transport layer compositions, ETL1 composed of a thick LiF/C 60 /BCP stack and ETL2 with a thinner LiF/C 60 /LiF stack, were located and measured outdoors for an extended period of more than three years. The analysis of the performance over time highlights a rapid degradation in the first 90 days of exposure, followed by a stabilization. Most of the initial degradation appears to be caused by a reduction in fill-factor (FF) while the open-circuit voltage ( V oc ) remains surprisingly constant over time. The analysis of the current–voltage (IV) curves reveals that by considering these figures of merit only, the presence of important features such as S-shaped curves can be overlooked, which could lead to a wrong interpretation of the degradation origin. To address this issue, two new figures of merits, S- V oc and S-FF, are introduced. The comparison between V oc and S- V oc shows to be an efficient and reliable way to identify S-shape formation, while enabling to quantify their contribution to performance loss. Finally, an attempt is made at understanding the origin of degradation in the perovskite mini-modules, likely an interface barrier formation in ETL1 samples and an increase in series resistance in ETL2 samples, possibly due to a partial delamination of the thinner C 60 layer.
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CITATION STYLE
Parion, J., Ramesh, S., Peraticos, E., Paraskeva, V., Norton, M., Hadjipanayi, M., … Vermang, B. (2025). A novel way of analyzing perovskite outdoor degradation: the S- V oc. EES Solar. https://doi.org/10.1039/d5el00079c
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