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水合甲磺酸CH3SO3H·(H2O)n(n = 1 - 5)簇合物的理论研究

Clusters of hydrated methane sulfonic acid CH3SO3H.(H2O)n (n = 1-5): a theoretical study.

作者信息

Wang Liming

机构信息

College of Chemistry, South China University of Technology, Guangzhou 510640, China.

出版信息

J Phys Chem A. 2007 May 10;111(18):3642-51. doi: 10.1021/jp067893n. Epub 2007 Apr 14.

Abstract

Ab initio and density functional methods have been used to examine the structures and energetics of the hydrated clusters of methane sulfonic acid (MSA), CH3SO3H.(H2O)n (n = 1-5). For small clusters with one or two water molecules, the most stable clusters have strong cyclic hydrogen bonds between the proton of OH group in MSA and the water molecules. With three or more water molecules, the proton transfer from MSA to water becomes possible, forming ion-pair structures between CH3SO3- and H3O+ moieties. For MSA.(H2O)3, the energy difference between the most stable ion pair and neutral structures are less than 1 kJ/mol, thus coexistence of neutral and ion-pair isomers are expected. For larger clusters with four and five water molecules, the ion-pair isomers are more stable (>10 kJ/mol) than the neutral ones; thus, proton transfer takes place. The ion-pair clusters can have direct hydrogen bond between CH3SO3- and H3O+ or indirect one through water molecule. For MSA.(H2O)5, the energy difference between ion pairs with direct and indirect hydrogen bonds are less than 1 kJ/mol; namely, the charge separation and acid ionization is energetically possible. The calculated IR spectra of stable isomers of MSA.(H2O)n clusters clearly demonstrate the significant red shift of OH stretching of MSA and hydrogen-bonded OH stretching of water molecules as the size of cluster increases.

摘要

从头算和密度泛函方法已被用于研究甲磺酸(MSA)水合团簇CH3SO3H·(H2O)n(n = 1 - 5)的结构和能量。对于含有一个或两个水分子的小团簇,最稳定的团簇在甲磺酸中OH基团的质子与水分子之间有很强的环状氢键。当有三个或更多水分子时,质子从甲磺酸转移到水成为可能,在CH3SO3-和H3O+部分之间形成离子对结构。对于MSA·(H2O)3,最稳定的离子对和中性结构之间的能量差小于1 kJ/mol,因此预计中性和离子对异构体共存。对于含有四个和五个水分子的较大团簇,离子对异构体比中性异构体更稳定(>10 kJ/mol);因此,发生了质子转移。离子对团簇可以在CH3SO3-和H3O+之间有直接氢键,也可以通过水分子有间接氢键。对于MSA·(H2O)5,具有直接和间接氢键的离子对之间的能量差小于1 kJ/mol;也就是说,电荷分离和酸电离在能量上是可能的。计算得到的MSA·(H2O)n团簇稳定异构体的红外光谱清楚地表明,随着团簇尺寸的增加,甲磺酸的OH伸缩振动和水分子的氢键OH伸缩振动有明显的红移。

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