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The validity of the potential model in predicting the structural, dynamical, thermodynamic properties of the unary and binary mixture of water-alcohol: Methanol-water case

机译:潜在模型的有效性在预测水 - 醇的机会和二元混合物的结构,动态,热力学性质:甲醇 - 水箱

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摘要

Two intermolecular potential models of methanol (TraPPE-UA and OPLS-AA) have been used in order to examine their validity in reproducing the selected structural, dynamical, and thermodynamic properties in the unary and binary systems. These two models are combined with two water models (SPC/E and TIP4P). The temperature dependence of density, surface tension, diffusion and structural properties for the unary system has been computed over specific range of temperatures (200-300K). The very good performance of the TraPPE-UA potential model in predicting surface tension, diffusion, structure, and density of the unary system led us to examine its accuracy and performance in its aqueous solution. In the binary system the same properties were examined, using different mole fractions of methanol. The TraPPE-UA model combined with TIP4P-water shows a very good agreement with the experimental results for density and surface tension properties; whereas the OPLS-AA combined with SPCE-water shows a very agreement with experimental results regarding the diffusion coefficients. Two different approaches have been used in calculating the diffusion coefficient in the mixture, namely the Einstein equation (EE) and Green-Kubo (GK) method. Our results show the advantageous of applying GK over EE in reproducing the experimental results and in saving computer time.
机译:已经使用了两种分子间潜在模型(Trappe-UA和OPLS-AA),以便检查它们在齐全和二元系统中的所选结构,动态和热力学性质中再现它们的有效性。这两种型号与两个水模型(SPC / E和TIP4P)相结合。在特定温度范围内(200-300K)计算了密度,表面张力,扩散和结构性能的温度依赖性。 Trappe-UA潜在模型在预测表面张力,扩散,结构和密度方面的非常好的性能LED我们在水溶液中检测其精度和性能。在二元体系中,使用不同的摩尔甲醇,检查相同的性质。 Trappe-UA模型与Tip4P-Water相结合,表现出非常良好的密度和表面张力特性的实验结果;虽然OPLS-AA与SPCE-水相结合,但与关于扩散系数的实验结果表示非常一致。已经使用两种不同的方法来计算混合物中的扩散系数,即Einstein方程(EE)和Green-Kubo(GK)方法。我们的结果表明,在再现实验结果和节省计算机时间时,在EE上应用GK的有利。

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