Bakó Imre, Megyes Tünde, Bálint Szabolcs, Grósz Tamás, Chihaia Viorel
Institute of Structural Chemistry, Chemical Research Center of the Hungarian Academy of Sciences, Pusztaszeri út 59-67, Budapest, Hungary.
Phys Chem Chem Phys. 2008 Aug 28;10(32):5004-11. doi: 10.1039/b808326f. Epub 2008 Jul 8.
Molecular dynamics simulation has been performed to study the structure of water-methanol mixtures. Besides the evaluation of partial radial distribution functions describing the hydrogen-bonded structure of the mixtures with different composition, the statistical analysis of configurations was introduced resulting in a new insight in the clustering properties and topology of hydrogen-bonded network. The results have shown that mixtures of methanol and water exhibit extended structures in solution. At low methanol concentration the water molecules form a percolated network, the methanol molecules are incorporated as monomers or short chains and together form a percolated system. In methanol-rich mixtures short water chains and longer methanol chains build up the hydrogen-bonded clusters in the system. On the basis of the statistical analysis of configurations obtained from molecular dynamics simulation it has been found that more methanol molecules are connected to non-cyclic entities, while more water molecules form rings that might have been predicted on the basis of the stoichiometry of the mixtures. This finding can be explained by the presence of microscopic configurational inhomogeneity in water-methanol mixtures.
已进行分子动力学模拟以研究水 - 甲醇混合物的结构。除了评估描述不同组成混合物氢键结构的部分径向分布函数外,还引入了构型的统计分析,从而对氢键网络的聚集性质和拓扑结构有了新的认识。结果表明,甲醇和水的混合物在溶液中呈现出扩展结构。在低甲醇浓度下,水分子形成一个渗流网络,甲醇分子以单体或短链形式掺入并共同形成一个渗流系统。在富含甲醇的混合物中,短水链和较长的甲醇链构成了系统中的氢键簇。基于从分子动力学模拟获得的构型统计分析发现,更多的甲醇分子连接到非环状实体,而更多的水分子形成环,这可能是根据混合物的化学计量比预测的。这一发现可以用水 - 甲醇混合物中微观构型不均匀性的存在来解释。