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Synergetic effect of tetraoctylammonium chloride in suppressing photoinduced phase segregation in mixed halide perovskite solar cells

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dc.contributor.author Amalraj, P.A.
dc.contributor.author Rajavinayagam, A.
dc.contributor.author Landova, L.
dc.contributor.author Dopita, M.
dc.contributor.author Holovsky, J.
dc.date.accessioned 2026-08-07T04:45:11Z
dc.date.available 2026-08-07T04:45:11Z
dc.date.issued 2025
dc.identifier.uri http://repo.lib.jfn.ac.lk/ujrr/handle/123456789/12854
dc.description.abstract Phase segregation, caused by halide ion migration under illumination, is a critical challenge limiting the commercialization of mixed-halide perovskites. In this study, a facile and effective strategy is introduced to mitigate photoinduced phase segregation in the FA0.83Cs0.17Pb(I0.6Br0.4)3 mixed halide perovskite film by employing tetraoctylammonium chloride (TOAC) as both an additive and surface passivation for the first time. The results demonstrate that TOAC effectively reduces halide ion migration, stabilizes the perovskite phase, and suppresses phase segregation, particularly in the combined additive-passivation configuration. Mixed-halide perovskite solar cells fabricated with this dual TOAC approach achieve the highest efficiency of 15.8 %, with enhanced stability under continuous illumination and reduced hysteresis. The study highlights the critical role of TOAC in suppressing phase segregation, and improving the stability and performance of mixed-halide perovskite solar cells by addressing both surface and bulk defects, facilitating the development of more stable and efficient mixed-halide perovskite solar cells. en_US
dc.language.iso en en_US
dc.publisher Elsevier en_US
dc.subject Mixed halide perovskite en_US
dc.subject Phase segregation en_US
dc.subject Surface passivation en_US
dc.subject Additive en_US
dc.subject Solar cells en_US
dc.title Synergetic effect of tetraoctylammonium chloride in suppressing photoinduced phase segregation in mixed halide perovskite solar cells en_US
dc.type Journal abstract en_US
dc.identifier.doi https://doi.org/10.1016/j.jallcom.2025.180533 en_US


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