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在水溶液中咪唑鎓基质子盐的自组装结构和动力学。

Self-assembled structure and dynamics of imidazolium-based protic salts in water solution.

机构信息

Institute for Frontier Materials, Deakin University, 75 Pigdons Rd, Geelong, Victoria 3216, Australia.

出版信息

Phys Chem Chem Phys. 2019 Jan 30;21(5):2691-2696. doi: 10.1039/c8cp07254j.

Abstract

Protic ionic liquids containing cations with long alkyl chains can form self-assembled micelles, vesicles, microemulsions, and lyotropic liquid crystal structures in water, acid water or tetrahydrofuran, etc. As a result of this unique property, they are regarded as a novel category of amphiphiles, and are gaining importance in the field of colloid and interface chemistry. The critical micelle concentration (CMC) of protic salts, e.g., alkyl-ammonium nitrates in water, was found to increase with decreasing chain length. It is generally believed that a long alkyl chain length is essential for the formation of self-assembled structures. So far, no self-assembled structure has been reported for protic ionic liquids with an alkyl chain length of n < 4. This paper reports on the structure and dynamics of two imidazolium based protic organic salts with no alkyl chain or a methyl group (n = 1) attached to the cation in water solution, determined through a detailed analysis of NMR spectra and pulsed-field gradient NMR data. We demonstrate that these imidazolium cations with no or a short alkyl chain (n = 1) can form a self-assembled clustering structure in water solution, which has a strong influence on the diffusion behavior of imidazolium molecular ions. It is speculated that this self-assembled structure is likely to be present in other similar solutions of ionic liquids with short alkyl chains.

摘要

含长链烷基阳离子的质子离子液体在水、酸性水或四氢呋喃等中可以形成自组装胶束、囊泡、微乳液和溶致液晶结构。由于这种独特的性质,它们被视为一类新型两亲性物质,在胶体和界面化学领域受到重视。质子盐(例如,烷基-硝酸铵)在水中的临界胶束浓度(CMC)随着链长的减少而增加。一般认为,长链烷基长度对于自组装结构的形成是必不可少的。到目前为止,还没有报道过链长为 n < 4 的质子离子液体的自组装结构。本文通过对 NMR 光谱和脉冲梯度 NMR 数据的详细分析,报道了两种无烷基链或阳离子上带有甲基(n = 1)的咪唑基质子有机盐在水溶液中的结构和动力学。我们证明,这些无或短链烷基(n = 1)的咪唑阳离子可以在水溶液中形成自组装聚集体结构,这对咪唑分子离子的扩散行为有很强的影响。据推测,这种自组装结构可能存在于其他具有短链烷基的类似离子液体溶液中。

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