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首页> 外文期刊>Journal of the American Chemical Society >INVESTIGATION OF STRUCTURE, DYNAMICS, AND SOLVATION IN 1-OCTANOL AND ITS WATER-SATURATED SOLUTION - MOLECULAR DYNAMICS AND FREE-ENERGY PERTURBATION STUDIES [Review]
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INVESTIGATION OF STRUCTURE, DYNAMICS, AND SOLVATION IN 1-OCTANOL AND ITS WATER-SATURATED SOLUTION - MOLECULAR DYNAMICS AND FREE-ENERGY PERTURBATION STUDIES [Review]

机译:1-辛醇及其水饱和溶液的结构,动力学和溶解度的研究-分子动力学和自由能摄动研究[综述]

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摘要

We have carried out molecular dynamics studies of 1-octanol and its water-saturated solution using a slightly modified version of the OPLS (optimized intermolecular potential function for liquid simulations) model. The structural, dynamic, and energetic properties of these systems were studied via molecular dynamics simulations and compared with experiment where possible. The structure of the pure liquid and solutions are characterized in terms of fluctuating regions of preferentially polar and nonpolar character, including inverted micellar aggregates. Calculations of the dielectric constant and three dielectric relaxation times of l-octanol give reasonable agreement with experiment. The results of time-correlation analyses performed on MD trajectory data are appraised with respect to the various explanations proposed by experimentalists for the multiple-frequency dielectric responses observed in l-octanol. We propose a mechanism (involving the turnover of hydrogen-bonded aggregates) for the less well-understood low-frequency dielectric response. We have computed the relative partition coefficients of benzene and phenol in pure water versus hydrated 1-octanol in quantitative agreement with experiment. Here, by analyzing octanol/water solvation-shell structuring around the solutes, insight is gained into hydrated 1-octanol's capability to serve as a biophase analog. [References: 115]
机译:我们使用OPLS(用于液体模拟的最佳分子间势函数)模型的稍微修改版本,对1-辛醇及其饱和水溶液进行了分子动力学研究。通过分子动力学模拟研究了这些系统的结构,动力学和能量特性,并在可能的情况下与实验进行了比较。纯液体和溶液的结构的特征在于具有极性和非极性特征的波动区域,包括倒胶束聚集体。辛醇的介电常数和三个介电弛豫时间的计算与实验合理吻合。关于MD轨迹数据进行时间相关分析的结果,是根据实验人员针对1-辛醇中观察到的多频介电响应提出的各种解释进行评估的。我们提出了一种机制(涉及氢键键合的聚集体的周转),用于不太容易理解的低频介电响应。与实验定量吻合,我们计算了纯水中苯和苯酚相对于水合1-辛醇的相对分配系数。在这里,通过分析围绕溶质的辛醇/水溶剂化壳结构,可以了解水合的1-辛醇用作生物相类似物的能力。 [参考:115]

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