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在甲醇中 Zn2+ 离子的溶剂化作用:量子力学、分子动力学和 EXAFS 方法的综合研究。

On the solvation of the Zn2+ ion in methanol: a combined quantum mechanics, molecular dynamics, and EXAFS approach.

机构信息

Dipartimento di Chimica, Università di Roma La Sapienza, P.le A. Moro 5, 00185 Roma, Italy.

出版信息

Inorg Chem. 2011 Sep 5;50(17):8509-15. doi: 10.1021/ic201100q. Epub 2011 Jul 29.

Abstract

The solvation properties of the Zn(2+) ion in methanol solution have been investigated using a combined approach based on molecular dynamics (MD) simulations and extended X-ray absorption fine structure (EXAFS) experimental results. The quantum mechanical potential energy surface for the interaction of the Zn(2+) ion with a methanol molecule has been calculated taking into account the effect of bulk solvent by the polarizable continuum model (PCM). The effective Zn-methanol interactions have been fitted by suitable analytical potentials, and have been utilized in the MD simulation to obtain the structural properties of the solution. The reliability of the whole procedure has been assessed by comparing the theoretical structural results with the EXAFS experimental data. The structural parameters of the first solvation shells issuing from the MD simulations provide an effective complement to the EXAFS experiments.

摘要

已采用基于分子动力学 (MD) 模拟和扩展 X 射线吸收精细结构 (EXAFS) 实验结果的综合方法研究了 Zn(2+) 离子在甲醇溶液中的溶剂化性质。通过极化连续体模型 (PCM) 考虑到溶剂的影响,计算了 Zn(2+) 离子与甲醇分子相互作用的量子力学势能面。通过合适的分析势拟合了有效的 Zn-甲醇相互作用,并将其用于 MD 模拟以获得溶液的结构性质。通过将理论结构结果与 EXAFS 实验数据进行比较,评估了整个过程的可靠性。从 MD 模拟得出的第一层溶剂化壳的结构参数为 EXAFS 实验提供了有效的补充。

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