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镁离子的溶剂化:水溶液中氯化镁的分子动力学模拟和振动光谱研究。

Solvation of magnesium dication: molecular dynamics simulation and vibrational spectroscopic study of magnesium chloride in aqueous solutions.

机构信息

Environmental Molecular Science Institute and Department of Chemistry, University of California, Irvine, California 92697, USA.

出版信息

J Phys Chem A. 2010 Apr 22;114(15):5141-8. doi: 10.1021/jp909132a.

Abstract

Magnesium dication plays many significant roles in biochemistry. While it is available to the environment from both ocean waters and mineral salts on land, its roles in environmental and atmospheric chemistry are still relatively unknown. Several pieces of experimental evidence suggest that contact ion pairing may not exist at ambient conditions in solutions of magnesium chloride up to saturation concentrations. This is not typical of most ions. There has been disagreement in the molecular dynamics literature concerning the existence of ion pairing in magnesium chloride solutions. Using a force field developed during this study, we show that contact ion pairing is not energetically favorable. Additionally, we present a concentration-dependent Raman spectroscopic study of the Mg-O(water) hexaaquo stretch that clearly supports the absence of ion pairing in MgCl(2) solutions, although a transition occurring in the spectrum between 0.06x and 0.09x suggests a change in solution structure. Finally, we compare experimental and calculated observables to validate our force field as well as two other commonly used magnesium force fields, and in the process show that ion pairing of magnesium clearly is not observed at higher concentrations in aqueous solutions of magnesium chloride, independent of the choice of magnesium force field, although some force fields give better agreement to experimental results than others.

摘要

二价镁离子在生物化学中扮演着许多重要的角色。尽管它可以从海洋和陆地的矿物质盐中获取,但它在环境和大气化学中的作用仍然相对未知。一些实验证据表明,在氯化镁溶液中,接触离子对在环境条件下可能不存在,即使在饱和浓度下也是如此。这与大多数离子不同。在分子动力学文献中,关于氯化镁溶液中是否存在离子对存在分歧。在这项研究中,我们使用开发的力场表明,接触离子对在能量上是不利的。此外,我们还进行了浓度依赖性的 Mg-O(水)六配位伸缩的拉曼光谱研究,这清楚地表明在 MgCl2 溶液中不存在离子对,尽管在 0.06x 和 0.09x 之间的光谱中发生了转变,表明溶液结构发生了变化。最后,我们将实验和计算的可观测结果进行了比较,以验证我们的力场以及另外两个常用的镁力场,并且在这个过程中表明,在水溶液中,无论选择哪种镁力场,在较高浓度下都不会观察到镁的离子对,尽管一些力场比其他力场更能符合实验结果。

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