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离子化中小水分子簇的动力学和结构变化。

Dynamics and structural changes of small water clusters on ionization.

机构信息

Department of Chemistry, Center for Superfunctional Materials, Pohang University of Science and Technology, San 31, Hyojadong, Namgu, Pohang, 790-784, Korea.

出版信息

J Comput Chem. 2013 Jul 5;34(18):1589-97. doi: 10.1002/jcc.23296. Epub 2013 Apr 22.

Abstract

Despite utmost importance in understanding water ionization process, reliable theoretical results of structural changes and molecular dynamics (MD) of water clusters on ionization have hardly been reported yet. Here, we investigate the water cations [(H2O)(n = 2-6)(+)] with density functional theory (DFT), Möller-Plesset second-order perturbation theory (MP2), and coupled cluster theory with single, double, and perturbative triple excitations [CCSD(T)]. The complete basis set limits of interaction energies at the CCSD(T) level are reported, and the geometrical structures, electronic properties, and infrared spectra are investigated. The characteristics of structures and spectra of the water cluster cations reflect the formation of the hydronium cation moiety (H3O(+)) and the hydroxyl radical. Although most density functionals fail to predict reasonable energetics of the water cations, some functionals are found to be reliable, in reasonable agreement with high-level ab initio results. To understand the ionization process of water clusters, DFT- and MP2-based Born-Oppenheimer MD (BOMD) simulations are performed on ionization. On ionization, the water clusters tend to have an Eigen-like form with the hydronium cation instead of a Zundel-like form, based on reliable BOMD simulations. For the vertically ionized water hexamer, the relatively stable (H2O)5(+) (5sL4A) cluster tends to form with a detached water molecule (H2O).

摘要

尽管了解水的离解过程至关重要,但可靠的理论结果对于水簇在离解过程中的结构变化和分子动力学(MD)仍然鲜有报道。在这里,我们使用密度泛函理论(DFT)、Møller-Plesset 二级微扰理论(MP2)和单、双和微扰三重激发耦合簇理论 [CCSD(T)] 研究了水阳离子[(H2O)(n = 2-6)(+)]。报告了 CCSD(T) 水平上相互作用能的完全基组极限,并研究了几何结构、电子性质和红外光谱。水簇阳离子的结构和光谱特征反映了质子化阳离子部分(H3O(+))和羟基自由基的形成。尽管大多数密度泛函未能预测水阳离子的合理能量,但一些泛函被发现是可靠的,与高水平的从头算结果有合理的一致性。为了理解水簇的离解过程,在离解过程中进行了基于 DFT 和 MP2 的 Born-Oppenheimer MD(BOMD)模拟。在离解过程中,基于可靠的 BOMD 模拟,水簇倾向于具有与质子化阳离子的 Eigen 型而不是 Zundel 型的形式。对于垂直离解的水六聚体,相对稳定的(H2O)5(+)(5sL4A)簇倾向于形成带有一个游离水分子(H2O)的形式。

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