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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Molecular Dynamics Simulation Studies of the Temperature-Dependent Structure and Dynamics of Isopropanol-Water Liquid Mixtures at Low Alcohol Content
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Molecular Dynamics Simulation Studies of the Temperature-Dependent Structure and Dynamics of Isopropanol-Water Liquid Mixtures at Low Alcohol Content

机译:低醇含量温度依赖性结构和异丙醇水液混合物温度依赖性结构和动力学的分子动力学模拟研究

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摘要

Series of molecular dynamics simulations for 2-propanol-water mixtures, as a function of temperature (between freezing and room temperature) and composition (x(ip) = 0, 0.5, 0.1, and 0.2), have been performed for temperatures reported in the only available experimental structure study. It is shown that when the all-atom optimized potentials for liquid simulations interatomic potentials for the alcohol are combined with the TIP4P/2005 water model, then the near-quantitative agreement with measured X-ray data, in the reciprocal space, can be achieved. Such an agreement justifies detailed investigations of structural, energetic, and dynamic properties on the basis of simulation trajectories. Here, we focus on characteristics related to hydrogen bonds (HB): cluster-, and in particular, ring formation, energy distributions, and lifetimes of HB-s have been scrutinized for the entire system, as well as for the water and isopropanol subsystems. It is demonstrated that similar to ethanol-water mixtures, the occurrence of 5-membered-hydrogen-bonded rings are significant, particularly at higher alcohol concentrations. Concerning HB energetics, an intriguing double maximum appears on the alcohol-alcohol HB energy distribution function. HB lifetimes have been found significantly longer in the mixtures than they are in pure liquids.
机译:对于2-丙醇 - 水混合物的分子动力学模拟,作为温度的函数(在冷冻和室温之间)和组合物(X(IP)= 0,0.5,0.1和0.2),用于报告的温度唯一可用的实验结构研究。结果表明,当液体模拟液体模拟的全原子优化电位与Tip4P / 2005水模型相结合时,可以实现与测量X射线数据的近定量协议,在往复空间中可以实现。这种协议在模拟轨迹的基础上证明了对结构,精力和动态性质的详细调查。在这里,我们专注于与氢键(Hb)相关的特性:簇 - ,特别是Hb-s的环形形成,能量分布和寿命,用于整个系统,以及水和异丙醇子系统的仔细审查。证明类似于乙醇 - 水混合物,5-元 - 氢键环的发生是显着的,特别是在更高的醇浓度下。关于HB能量学,醇酒HB能量分布功能出现有趣的双倍最大值。在混合物中发现HB寿命比在纯液体中显着更长。

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