Magnetic-biased chiral molecules enabling highly oriented photovoltaic perovskites

The interaction between sites A, B and X with passivation molecules is restricted when the conventional passivation strategy is applied in perovskite (ABX ) photovoltaics. Fortunately, the revolving A-site presents an opportunity to strengthen this interaction by utilizing an external field. Herein,...

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Veröffentlicht in:National science review 2024-02, Vol.11 (2), p.nwad305-nwad305
Hauptverfasser: Chen, Jing, Deger, Caner, Su, Zhen-Huang, Wang, Kai-Li, Zhu, Guang-Peng, Wu, Jun-Jie, He, Bing-Chen, Chen, Chun-Hao, Wang, Tao, Gao, Xing-Yu, Yavuz, Ilhan, Lou, Yan-Hui, Wang, Zhao-Kui, Liao, Liang-Sheng
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Sprache:eng
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Zusammenfassung:The interaction between sites A, B and X with passivation molecules is restricted when the conventional passivation strategy is applied in perovskite (ABX ) photovoltaics. Fortunately, the revolving A-site presents an opportunity to strengthen this interaction by utilizing an external field. Herein, we propose a novel approach to achieving an ordered magnetic dipole moment, which is regulated by a magnetic field via the coupling effect between the chiral passivation molecule and the A-site (formamidine ion) in perovskites. This strategy can increase the molecular interaction energy by approximately four times and ensure a well-ordered molecular arrangement. The quality of the deposited perovskite film is significantly optimized with inhibited nonradiative recombination. It manages to reduce the open-circuit voltage loss of photovoltaic devices to 360 mV and increase the power conversion efficiency to 25.22%. This finding provides a new insight into the exploration of A-sites in perovskites and offers a novel route to improving the device performance of perovskite photovoltaics.
ISSN:2095-5138
2053-714X
DOI:10.1093/nsr/nwad305