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https://www.um.edu.mt/library/oar/handle/123456789/98321| Title: | An interlaboratory study on the stability of all‐printable hole transport material–free perovskite solar cells |
| Authors: | De Rossi, Francesca Barbé, Jérémy Tanenbaum, David M. Cinà, Lucio Castriotta, Luigi Angelo Stoichkov, Vasil Wei, Zhengfei Tsoi, Wing Chung Kettle, Jeffrey Sadula, Artem Azzopardi, Brian Xie, Haibing Di Carlo, Aldo Lira-Cantú, Monica Katz, Eugene A. Watson, Trystan M. Brunetti, Francesca |
| Authors: | Chircop, John |
| Keywords: | Perovskite solar cells Solar cells -- Materials Photovoltaic cells -- Materials Direct energy conversion |
| Issue Date: | 2020 |
| Publisher: | Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim |
| Citation: | De Rossi, F., Barbé, J., Tanenbaum, D. M., Cinà, L., Castriotta, L. A., Stoichkov, V., ... & Brunetti, F. (2020). An interlaboratory study on the stability of all‐printable hole transport material–free perovskite solar cells. Energy Technology, 8(12), 2000134. |
| Abstract: | Comparisons between different laboratories on long-term stability analyses of perovskite solar cells (PSCs) is still lacking in the literature. This work presents the results of an interlaboratory study conducted between five laboratories from four countries. Carbon-based PSCs are prepared by screen printing, encapsulated, and sent to different laboratories across Europe to assess their stability by the application of three ISOS aging protocols: (a) in the dark (ISOS-D), (b) under simulated sunlight (ISOS-L), and (c) outdoors (ISOS-O). Over 1000 h stability is reported for devices in the dark, both at room temperature and at 65 °C. Under continuous illumination at open circuit, cells survive only for few hours, although they recover after being stored in the dark. Better stability is observed for cells biased at maximum power point under illumination. Finally, devices operate in outdoors for 30 days, with minor degradation, in two different locations (Barcelona, Spain and Paola, Malta). The findings demonstrate that open-circuit conditions are too severe for stability assessment and that the diurnal variation of the photovoltaic parameters reveals performance to be strongly limited by the fill factor, in the central hours of the day, due to the high series resistance of the carbon electrode. |
| URI: | https://www.um.edu.mt/library/oar/handle/123456789/98321 |
| Appears in Collections: | Scholarly Works - FacEngSCE |
Files in This Item:
| File | Description | Size | Format | |
|---|---|---|---|---|
| An interlaboratory study on the stability of all‐printable hole transport material–free perovskite solar cells.pdf | 3.22 MB | Adobe PDF | View/Open |
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