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水溶液中质子转移过程中的多体能量。

Many-body energies during proton transfer in an aqueous system.

机构信息

School of Physical Sciences, Swami Ramanand Teerth Marathwada University, Nanded, 431 606, India.

出版信息

J Mol Model. 2010 Oct;16(10):1559-66. doi: 10.1007/s00894-010-0675-y. Epub 2010 Feb 27.

Abstract

The energetics of the mechanism of proton transfer from a hydronium ion to one of the water molecules in its first solvation shell are studied using density functional theory and the Møller-Plesset perturbation (MP2) method. The potential energy surface of the proton transfer mechanism is obtained at the B3LYP and MP2 levels with the 6-311++G** basis set. Many-body analysis is applied to the proton transfer mechanism to obtain the change in relaxation energy, two-body, three-body and four-body energies when proton transfer occurs from the hydronium ion to one of the water molecules in its first solvation shell. It is observed that the binding energy (BE) of the complex decreases during the proton transfer process at both levels of theory. During the proton transfer process, the % contribution of the total two-body energy to the binding energy of the complex increases from 62.9 to 68.09% (39.9 to 45.95%), and that of the total three-body increases from 25.9 to 27.09% (24.16 to 26.17%) at the B3LYP/6-311++G** (MP2/ 6-311++G**) level. There is almost no change in the water-water-water three-body interaction energy during the proton transfer process at both levels of theory. The contribution of the relaxation energy and the total four-body energy to the binding energy of the complex is greater at the MP2 level than at the B3LYP level. Significant differences are found between the relaxation energies, the hydronium-water interaction energies and the four-body interaction energies at the B3LYP and MP2 levels.

摘要

使用密度泛函理论和 Møller-Plesset 微扰(MP2)方法研究了从水合氢离子到其第一溶剂化壳层中的一个水分子的质子转移机制的能量。在 B3LYP 和 MP2 水平上使用 6-311++G** 基组获得质子转移机制的势能面。多体分析应用于质子转移机制,以获得质子从水合氢离子转移到其第一溶剂化壳层中的一个水分子时,弛豫能、二体能、三体能和四体能的变化。结果表明,在两种理论水平下,复合物的结合能(BE)在质子转移过程中都会降低。在质子转移过程中,总二体能对复合物结合能的贡献从 62.9%增加到 68.09%(39.9%增加到 45.95%),总三体能的贡献从 25.9%增加到 27.09%(24.16%增加到 26.17%),在 B3LYP/6-311++G**(MP2/6-311++G**)水平。在两种理论水平下,质子转移过程中水分子-水分子-水分子三体相互作用能几乎没有变化。在 MP2 水平上,弛豫能和总四体能对复合物结合能的贡献大于 B3LYP 水平。在 B3LYP 和 MP2 水平上,弛豫能、水合氢离子相互作用能和四体相互作用能存在显著差异。

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