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通过氢核磁共振弛豫测量法研究限制在二氧化硅基质中的1-乙基-3-甲基咪唑硫氰酸盐的动力学性质。

Dynamical properties of EMIM-SCN confined in a SiO matrix by means of H NMR relaxometry.

作者信息

Kruk Danuta, Wojciechowski Milosz, Verma Yogendra Lal, Chaurasia Sujeet Kumar, Singh Rajendra Kumar

机构信息

University of Warmia & Mazury in Olsztyn, Faculty of Mathematics and Computer Science, Słoneczna 54, 10-710 Olsztyn, Poland.

出版信息

Phys Chem Chem Phys. 2017 Dec 13;19(48):32605-32616. doi: 10.1039/c7cp06174a.

Abstract

H nuclear magnetic resonance relaxometry is applied to investigate the translational and rotational dynamics of ionogels composed of an ionic liquid (IL): 1-ethyl-3-methyl-imidazolium-thiocyanate (EMIM-SCN) confined in a nanoporous SiO matrix. The relaxation studies were performed in the frequency range of 4 kHz-40 MHz and the temperature range of 223-248 K for different concentrations of the IL; the ratio (no. of moles of IL/no. of moles of SiO) yields: 1/2, 3/5 and 7/10. A thorough analysis of this large set of experimental data was performed assuming the existence of two fractions of the liquid: a core fraction (near the pore center) and a surface fraction (near the confining walls). It was shown for all concentrations that the confinement does not significantly affect the translational motion near the pore center compared to the dynamics in bulk. The diffusion coefficients in the surface fraction are considerably smaller compared to the core fraction (from one to two orders of magnitude) and the difference becomes larger with increasing temperature. The diffusion coefficients become smaller for higher concentrations - this effect is not large, but visible. Very importantly, it was shown that, despite the interactions with the surface, the diffusion in the surface fraction remains of 3D character. As far as rotational dynamics in the surface fraction is concerned, it slows down compared to the bulk (and the core fraction), but this effect is of the order of factor 2-3.

摘要

H核磁共振弛豫测量法被用于研究由离子液体(IL):1-乙基-3-甲基咪唑硫氰酸盐(EMIM-SCN)限制在纳米多孔SiO基质中组成的离子凝胶的平移和旋转动力学。对于不同浓度的IL,在4 kHz - 40 MHz的频率范围和223 - 248 K的温度范围内进行了弛豫研究;该比例(IL的摩尔数/SiO的摩尔数)产生:1/2、3/5和7/10。假设存在两部分液体:核心部分(靠近孔中心)和表面部分(靠近限制壁),对这一大组实验数据进行了全面分析。结果表明,对于所有浓度,与本体中的动力学相比,限制对孔中心附近的平移运动没有显著影响。表面部分的扩散系数与核心部分相比要小得多(相差一到两个数量级),并且随着温度升高,差异变得更大。对于更高的浓度,扩散系数变小——这种效应不大,但很明显。非常重要的是,结果表明,尽管与表面存在相互作用,但表面部分的扩散仍然具有三维特征。就表面部分的旋转动力学而言,与本体(以及核心部分)相比,它会减慢,但这种效应约为2 - 3倍。

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