A Near-Room-Temperature Hybrid Organic–Inorganic Lead Halide Perovskite Ferroelectric [BrCH2CH2N(CH3)3][PbBr3] and Its Flexible Composite Film
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https://figshare.com/articles/dataset/A_Near-Room-Temperature_Hybrid_Organic_Inorganic_Lead_Halide_Perovskite_Ferroelectric_BrCH_sub_2_sub_CH_sub_2_sub_N_CH_sub_3_sub_sub_3_sub_PbBr_sub_3_sub_and_Its_Flexible_Composite_Film/17700175
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A hybrid organic–inorganic lead halide perovskite, [BrCH2CH2N(CH3)3][PbBr3] (BEPbBr), obtained by matching a quasi-spherical (2-bromoethyl) trimethylammonium cation with an infinite one-dimensional zigzag [PbBr3]− anion chain, exhibits a reversible ferroelectric phase transition at 302/286 K. Switchable dielectric and ferroelectricity were observed accompanied by the order–disorder phase transition at near-room-temperature. Further, the ferroelectric BEPbBr was dispersed into a PVDF matrix to form flexible BEPbBr@PVDF composite films. The β-phase PVDF content in composite films was significantly improved without requiring complicated after-treatment, and the ferroelectricity was also greatly enhanced resulting from the induced ordered orientation by the interactions between BEPbBr and β-phase dominated PVDF. This finding may promote research on near-room-temperature multifunctional switching smart materials and wearable devices by utilizing molecular ferroelectrics and their flexible films.



