Dimensional Control in Polyoxometalate Crystals Hybridized with Amphiphilic Polymerizable Ionic Liquids

两亲性可聚合离子液体杂化多金属氧酸盐晶体的尺寸控制

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Abstract

Ionic liquids are an important component for constructing functional materials, and polyxometalate cluster anion is a promising partner for building inorganic-organic hybrid materials comprising ionic liquids. In such hybrid materials, the precise control of the molecular arrangement in the bulk structures is crucial for the emergence of characteristic functions, which can be realized by introducing an amphiphilic moiety into the ionic liquids. Here, an amphiphilic polymerizable imidazolium ionic liquid with a methacryloyl group was firstly hybridized with polyoxometalate anions of octamolybdate ([Mo(8)O(26)](4-), Mo(8)) and silicotungstate ([SiW(12)O(40)](4-), SiW(12)) to obtain inorganic-organic hybrid crystals. The polymerizable ionic liquid with a octyl chain (denoted as MAImC(8)) resulted in the formation of anisotropic molecular arrangements in the bulk crystal structure, which was compared with the hybrid crystals composed from the polymerizable ionic liquid without a long alkyl chain (denoted as MAIm). Rather densely packed isotropic molecular arrangements were observed in the hybrid crystals of MAIm-Mo(8) and MAIm-SiW(12) due to the lack of the amphiphilic moiety. On the other hand, using the amphiphilic MAImC(8) cation gave rise to a honeycomb-like structure with the Mo(8) anion and a layered structure with the SiW(12) anion, respectively.

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