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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >H-1 NMR Relaxometry and Diffusometry Study of Magnetic and Nonmagnetic Ionic Liquid-Based Solutions: Cosolvent and Temperature Effects
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H-1 NMR Relaxometry and Diffusometry Study of Magnetic and Nonmagnetic Ionic Liquid-Based Solutions: Cosolvent and Temperature Effects

机译:磁性和非磁性离子液体溶液的H-1 NMR弛豫谱和扩散测量研究:宇宙和温度效应

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In this work, H-1 NMR relaxometry and diffusometry as well as viscometry experiments were carried out as a means to study the molecular dynamics of magnetic and nonmagnetic ionic liquid-based systems. In order to evaluate the effect of a cosolvent on the superparamagnetic properties observed for Aliquat-iron-based magnetic ionic liquids, mixtures comprising different concentrations, 1% and 10% (v/v), of DMSO-d6 were prepared and studied. The results for both magnetic and nonmagnetic systems were consistently analyzed an suggest that, when at low concentrations, DMSO-d6 promotes more structured ionic arrangements, thus enhancing these superparamagnetic properties. Furthermore, the analysis of temperature and water concentration effects allowed to conclude that neither one of these variables significantly affected the superparamagnetic properties of the studied magnetic ionic liquids.
机译:在该工作中,进行H-1 NMR弛豫和扩散测定法以及粘度测定实验,作为研究磁性和非磁性离子液体液体系统的分子动力学的方法。 为了评估求解剂对用于基于原料 - 铁基磁性离子液体的超顺磁性的影响,制备并研究包含不同浓度,1%和10%(v / v)的混合物并研究。 始终分析磁性和非磁性系统的结果表明,当在低浓度时,DMSO-D6促进更多结构化离子装置,从而提高这些超顺磁性。 此外,允许的温度和水浓度效应的分析得出结论,这些变量中的一种显着影响所研究的磁离子液体的超顺磁性。

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