化学
外层电子转移
羧酸盐
水溶液
阳离子聚合
分子动力学
协调球
金属
超分子化学
天然有机质
溶剂化壳
结晶学
分子
离子
物理化学
计算化学
立体化学
高分子化学
有机化学
吸附
溶剂化
作者
Andrey G. Kalinichev,R. James Kirkpatrick
标识
DOI:10.1111/j.1365-2389.2007.00929.x
摘要
Summary Molecular computer modelling of natural organic matter (NOM) and its interactions with metal cations in aqueous solution is a highly effective tool for helping to understand and quantitatively predict the molecular mechanisms of metal‐NOM complexation. This paper presents the results of molecular dynamics (MD) computations of the interaction of NOM with dissolved Na + , Cs + , Mg 2+ and Ca 2+ . They show that Na + forms only very weak outer‐sphere complexes with NOM, whereas Cs + interacts somewhat more strongly, but also mainly via outer‐sphere association. Mg 2+ interacts little with NOM due to its strongly held hydration shell. Ca 2+ has the strongest association with NOM and forms inner‐sphere complexes with NOM carboxylate groups. This last result supports the idea of supramolecular, Ca‐mediated NOM aggregation. Cation‐NOM binding occurs principally with carboxylate groups, and to a lesser extent with phenolic and other –R‐OH groups. The contributions of other NOM functional groups are minimal. The diffusional mobility of NOM‐bound cations is ∼20% (NOM‐Na + outer‐sphere complex) to ∼95% (NOM‐Ca 2+ inner‐sphere complex) less than in aqueous solutions without NOM. The MD simulation results are in good agreement with NMR spectroscopic measurements for Cs‐NOM solutions.
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