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Photo-stability study of a solution-processed small molecule solar cell system: correlation between molecular conformation and degradation

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Taylor & Francis Group2024-02-07 更新2026-04-16 收录
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https://tandf.figshare.com/articles/dataset/Photo-stability_study_of_a_solution-processed_small_molecule_solar_cell_system_correlation_between_molecular_conformation_and_degradation/5831376/1
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Solution-processed organic small molecule solar cells (SMSCs) have achieved efficiency over 11%. However, very few studies have focused on their stability under illumination and the origin of the degradation during the so-called burn-in period. Here, we studied the burn-in period of a solution-processed SMSC using benzodithiophene terthiophene rhodamine:[6,6]-phenyl C<sub>71</sub> butyric acid methyl ester (BTR:PC<sub>71</sub>BM) with increasing solvent vapour annealing time applied to the active layer, controlling the crystallisation of the BTR phase. We find that the burn-in behaviour is strongly correlated to the crystallinity of BTR. To look at the possible degradation mechanisms, we studied the fresh and photo-aged blend films with grazing incidence X-ray diffraction, UV–vis absorbance, Raman spectroscopy and photoluminescence (PL) spectroscopy. Although the crystallinity of BTR affects the performance drop during the burn-in period, the degradation is found not to originate from the crystallinity changes of the BTR phase, but correlates with changes in molecular conformation – rotation of the thiophene side chains, as resolved by Raman spectroscopy which could be correlated to slight photobleaching and changes in PL spectra.
提供机构:
Kim, Ji-Seon; Wang, Zhao-Kui; Newman, Michael J.; Barbé, Jérémy; Jain, Sagar M.; Lee, Harrison Ka Hin; Speller, Emily M.; Luke, Joel; Tsoi, Chung; Li, Zhe; Li, Meng
创建时间:
2018-01-29
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