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令人惊讶的是,二氧化硅受限离子液体具有很高的、类似本体液体的流动性。

Surprisingly high, bulk liquid-like mobility of silica-confined ionic liquids.

作者信息

Göbel Ronald, Hesemann Peter, Weber Jens, Möller Eléonore, Friedrich Alwin, Beuermann Sabine, Taubert Andreas

机构信息

Institute of Chemistry, University of Potsdam, D-14476, Golm, Germany.

出版信息

Phys Chem Chem Phys. 2009 May 21;11(19):3653-62. doi: 10.1039/b821833a. Epub 2009 Mar 17.

Abstract

Mesoporous silica monoliths were prepared by the sol-gel technique and filled with 1-ethyl-3-methyl imidazolium [Emim]-X (X=dicyanamide [N(CN)2], ethyl sulfate [EtSO4], thiocyanate [SCN], and triflate [TfO]) ionic liquids (ILs) using a methanol-IL exchange technique. The structure and behavior of the ILs inside the silica monoliths were studied using X-ray scattering, nitrogen sorption, IR spectroscopy, solid-state NMR, and thermal analysis. DSC finds shifts in both the glass transition temperature and melting points (where applicable) of the ILs. Glass transition and melting occur well below room temperature. There is thus no conflict with the NMR and IR data, which show that the ILs are as mobile at room temperature as the bulk (not confined) ILs. The very narrow line widths of the NMR spectra suggest that the ILs in our materials have the highest mobility reported for confined ILs so far. As a result, our data suggest that it is possible to generate IL/silica hybrid materials (ionogels) with bulk-like properties of the IL. This could be interesting for applications in, e.g., the solar cell or membrane fields.

摘要

介孔二氧化硅整体材料通过溶胶 - 凝胶技术制备,并采用甲醇 - 离子液体交换技术填充1 - 乙基 - 3 - 甲基咪唑鎓[Emim]-X(X = 双氰胺[N(CN)₂]、硫酸乙酯[EtSO₄]、硫氰酸盐[SCN]和三氟甲磺酸盐[TfO])离子液体(ILs)。使用X射线散射、氮吸附、红外光谱、固态核磁共振和热分析等方法研究了二氧化硅整体材料内部离子液体的结构和行为。差示扫描量热法(DSC)发现离子液体的玻璃化转变温度和熔点(如适用)均发生了变化。玻璃化转变和熔化均在远低于室温的温度下发生。因此,这与核磁共振和红外数据并不冲突,这些数据表明离子液体在室温下与本体(非受限)离子液体一样具有流动性。核磁共振谱线的极窄线宽表明,我们材料中的离子液体具有迄今为止报道的受限离子液体中最高的流动性。因此,我们的数据表明,有可能制备出具有离子液体本体性质的离子液体/二氧化硅杂化材料(离子凝胶)。这对于例如太阳能电池或膜领域的应用可能具有重要意义。

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