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    Online Resource
    Online Resource
    Royal Society of Chemistry (RSC) ; 2022
    In:  Journal of Materials Chemistry A Vol. 10, No. 35 ( 2022), p. 18038-18049
    In: Journal of Materials Chemistry A, Royal Society of Chemistry (RSC), Vol. 10, No. 35 ( 2022), p. 18038-18049
    Abstract: While using additives such as ionic liquids (IL) is known to boost the efficiency and stability of perovskite solar cells, it is still unclear how ILs impact the difficile perovskite film formation process. Here we investigate the impact of the IL BMIMBF 4 on the film formation of the model halide perovskite MAPbI 3 by multimodal optical in situ spectroscopy during solution processing via one-step spin coating and a solvent engineering approach. One-step processing experiments reveal that IL in the precursor solutions does not affect the formation of perovskite–solvent complexes, but higher IL contents delay the perovskite transformation with decreased growth rates. For solvent engineering, the perovskite growth rate decreases with later anti-solvent (AS) dripping as the properties of PbI 4 2− species in the precursor solutions change during drying. Here the IL also affects the evolution of the PbI 4 2− properties, as the IL cation interacts with the PbI 4 2− . This interaction appears to reduce the perovskite growth rates after initiating perovskite formation by AS dripping. Still, in the as-coated films the IL efficiently passivates defect states. Thus, our work provides important insights into how decisive ILs impact the sensitive interconnection between precursor properties, film formation process and final optoelectronic functionality of perovskite thin films.
    Type of Medium: Online Resource
    ISSN: 2050-7488 , 2050-7496
    Language: English
    Publisher: Royal Society of Chemistry (RSC)
    Publication Date: 2022
    detail.hit.zdb_id: 2702232-8
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