High-Temperature Switchable Dielectric of an Organic–Inorganic Hybrid Metal Halide with Four-fold Cross-Linking Inorganic Anion Spiral Chains
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The understanding of structure–property relationship and exploration of novel physical properties are current research topics of molecular switchable dielectric materials. In this paper, an organic metal halide {[ClCH2CH2(OH)CH2N(CH3)3][PbBr3], PbBr2-3-Cl} was obtained by the reaction of 3-chloro-2-hydroxypropyltrimethyl ammonium chloride and lead bromide in HBr aqueous solution. The structural analysis reveals that PbBr2-3-Cl consists of an organic ammonium cation and a four-fold cross-linking spiral inorganic anion chain, in which the Pb atom is five-coordinated with Br atoms adopting a square-pyramidal geometry, which is further connected with four neighboring square-pyramids by sharing four Br atoms at the vertices of the square-pyramid bottom. PbBr2-3-Cl can be used as a dielectric switch at a very high temperature (435 K), and a semiconductor and broadband red fluorescent material.



