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An extended ab initio QM/MM MD approach to structure and dynamics of Zn(II) in aqueous solution

机译:从头开始的扩展QM / MM MD方法研究水溶液中Zn(II)的结构和动力学

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Structural and dynamical properties of Zn(II) in aqueous solution were investigated, based on an ab initio quantum mechanical/molecular mechanical (QM/MM) molecular dynamics simulation at double-zeta Hartree-Fock quantum mechanical level including the first and second hydration shells into the QM region. The inclusion of the second shell in the QM region resulted in significant changes in the properties of the hydrate. The first shell coordination number was found to be 6, the second shell consists of similar to 14 water molecules. The structural properties were determined in terms of RDF, ADF, tilt and theta angle distributions, while dynamics were characterized by mean ligand residence times, ion-ligand stretching frequencies and the vibrational and librational motions of water ligands. (C) 2005 American Institute of Physics.
机译:基于从头算量子力学/分子力学(QM / MM)分子动力学在双zeta Hartree-Fock量子力学水平(包括第一和第二水合壳)的模拟,研究了水溶液中Zn(II)的结构和动力学性质进入质量管理区域。 QM区包含第二个壳层,导致水合物性质发生重大变化。发现第一壳的配位数为6,第二壳由类似于14个水分子组成。结构特性由RDF,ADF,倾斜角和θ角分布确定,而动力学的特征在于平均配体停留时间,离子-配体拉伸频率以及水配体的振动和自由运动。 (C)2005美国物理研究所。

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