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首页> 外文期刊>The Journal of Chemical Physics >EXAMINING THE INFLUENCE OF THE [ZN(H2O)(6)](2+) GEOMETRY CHANGE ON THE MONTE CARLO SIMULATIONS OF ZN2+ IN WATER
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EXAMINING THE INFLUENCE OF THE [ZN(H2O)(6)](2+) GEOMETRY CHANGE ON THE MONTE CARLO SIMULATIONS OF ZN2+ IN WATER

机译:检查[ZN(H2O)(6)](2+)几何变化对水中ZN2 +的蒙特卡罗模拟的影响

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摘要

Quantum chemical calculations have been carried out to estimate the variation in the interaction energy between one or two water molecules and the Zn2+ hydrated ion ([Zn(H2O)(6)](2+)) when the Zn-O intramolecular distance is changed. Likewise, changes in the interaction energy between a second hydration shell formed by twelve H2O and the hydrated ion when shrinking the hexahydrate have been also examined, using a previously reported hydrated ion-water potential [Pappalardo et al., J. Phys. Chem. 97, 4500 (1993)] and the Matsuoka-Clementi-Yoshimine (MCY) potential for the water-water interactions. Using these potentials and that of Clementi for the Zn2+-H2O interaction, Monte Carlo simulations have been performed using two different Zn-O distances for the first hydration shell. Results show that influence of the geometrical relaxation on the solvation energy is not large, about 2.5%. Consequences on the use of a flexible or rigid hydrated ion are discussed. (C) 1996 American Institute of Physics. [References: 7]
机译:进行了量子化学计算,以估计当Zn-O分子内距离改变时,一个或两个水分子与Zn2 +水合离子([Zn(H2O)(6)](2+))之间的相互作用能的变化。 。同样,还使用先前报道的水合离子-水电势[Pappalardo等人,J。Phys.Immunol。,2002,6,5,4,5]来研究由十二个H 2 O形成的第二水合壳与水合离子在收缩六水合物时的相互作用能的变化。化学97,4500(1993)]和松冈-金文泰-吉峰(MCY)的水-水相互作用潜力。利用这些电势和Clementi的Zn2 + -H2O相互作用,对第一个水合壳使用两个不同的Zn-O距离进行了蒙特卡洛模拟。结果表明,几何弛豫对溶剂化能的影响不大,约为2.5%。讨论了使用柔性或刚性水合离子的后果。 (C)1996年美国物理研究所。 [参考:7]

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