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Properties of the liquid-vapor interface of acetone-methanol mixtures, as seen from computer simulation and ITIM surface analysis

机译:从计算机模拟和ITIM表面分析可以看出,丙酮-甲醇混合物的液-气界面性质

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摘要

Molecular dynamics simulations of the liquid-vapor interface of acetone-methanol mixtures of different compositions, including the two neat systems, have been performed on the canonical (N, V, T) ensemble at 293 K. The intrinsic liquid surface has been determined in terms of the Identification of the Truly Interfacial Molecules (ITIM) method. The results have revealed that the proximity of the interface influences the properties of only the first molecular layer of the liquid phase, while the second layer already turns out to be bulk-like in every respect. The two molecules are distributed uniformly along the macroscopic surface normal axis, as no strong preference for surface adsorption is shown by any of them. However, similarly to the bulk liquid phase, both molecules exhibit a marked tendency for self-association within the surface layer. Surface orientations are found to be composition independent; all the preferred orientations of both molecules correspond to the same alignment of the molecular dipole vector, which is nearly parallel to the macroscopic surface plane, declining only 10-20 degrees from it towards the vapor phase. The surface properties are thus primarily governed by dipolar interactions, whereas hydrogen bonding within the surface layer, which decreases steadily with an increase in the acetone mole fraction, plays only a minor role in this respect.
机译:在293 K的规范(N,V,T)集合上进行了不同成分(包括两个纯净系统)的丙酮-甲醇混合物的液-气界面的分子动力学模拟。真正界面分子(ITIM)方法的识别条款。结果表明,界面的接近性仅影响液相的第一分子层的性质,而第二层在各个方面已经证明是块状的。这两个分子沿宏观表面法向轴均匀分布,因为它们中的任何一个都没有表现出强烈的表面吸附偏好。然而,类似于本体液相,两个分子在表面层内均表现出明显的自缔合趋势。发现表面取向是与组成无关的。两个分子的所有优选取向都对应于分子偶极子向量的相同排列,该排列几乎平行于宏观表面,从其向着气相仅下降了10-20度。因此,表面性质主要由偶极相互作用决定,而表面层中的氢键随丙酮摩尔分数的增加而稳定地减少,在这方面仅起较小的作用。

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