化学
极化率
从头算
离子
计算化学
密度泛函理论
分子模型
价(化学)
量子
纳米技术
水溶液中的金属离子
化学物理
分子
量子力学
物理
有机化学
材料科学
作者
Pengfei Li,Kenneth M. Merz
出处
期刊:Chemical Reviews
[American Chemical Society]
日期:2017-01-03
卷期号:117 (3): 1564-1686
被引量:328
标识
DOI:10.1021/acs.chemrev.6b00440
摘要
Metal ions play significant roles in numerous fields including chemistry, geochemistry, biochemistry, and materials science. With computational tools increasingly becoming important in chemical research, methods have emerged to effectively face the challenge of modeling metal ions in the gas, aqueous, and solid phases. Herein, we review both quantum and classical modeling strategies for metal ion-containing systems that have been developed over the past few decades. This Review focuses on classical metal ion modeling based on unpolarized models (including the nonbonded, bonded, cationic dummy atom, and combined models), polarizable models (e.g., the fluctuating charge, Drude oscillator, and the induced dipole models), the angular overlap model, and valence bond-based models. Quantum mechanical studies of metal ion-containing systems at the semiempirical, ab initio, and density functional levels of theory are reviewed as well with a particular focus on how these methods inform classical modeling efforts. Finally, conclusions and future prospects and directions are offered that will further enhance the classical modeling of metal ion-containing systems.
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