首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >First-Principles Molecular Dynamics Study of a Deep Eutectic Solvent: Choline Chloride/Urea and Its Mixture with Water
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First-Principles Molecular Dynamics Study of a Deep Eutectic Solvent: Choline Chloride/Urea and Its Mixture with Water

机译:深红色溶剂的第一原理分子动力学研究:氯化胆碱/尿素及其与水的混合物

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First-principles molecular dynamics simulations in the canonical ensemble at temperatures of 333 and 363 K and at the corresponding experimental densities are carried out to investigate the behavior of the 1:2 choline chloride/urea (reline) deep eutectic solvent and its equimolar mixture with water. Analysis of atom atom radial and spatial distribution functions and of the H-bond network reveals the microheterogeneous structure of these complex liquid mixtures. In neat reline, the structure is governed by strong H-bonds of the trans- and cis-H atoms of urea to the chloride ion. In hydrous reline, water competes for the anions, and the H atoms of urea have similar propensities to bond to the chloride ions and the O atoms of urea and water. The vibrational spectra exhibit relatively broad peaks reflecting the heterogeneity of the environment. Although the 100 ps trajectories allow only for a qualitative assessment of transport properties, the simulations indicate that water is more mobile than the other species and its addition also fosters faster motion of urea.
机译:第一原理在正则系综分子动力学模拟在333和363的K的温度下,并在相应的实验密度进行了调查1的行为:2氯化胆碱/脲(换衬)深共晶溶剂和其与等摩尔混合物水。原子原子径向的分析和空间分布函数和氢键网络的揭示这些复杂的液体混合物的微观非均相结构。整齐换衬,该结构是由尿素的反式和顺式的H原子以氯离子的强氢键的约束。在含水换衬,水竞争的阴离子,及尿素的H原子具有相似的倾向,以键合到氯离子和尿素和水的O原子。振动光谱显示出反映了环境的异质性相对宽的峰。虽然100ps的轨迹仅允许传输性质的定性评估,该模拟表明,水是比其他种类和其添加也促进更快的尿素运动更多的移动。

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