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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Relative Complexation Energies for Li~+ Ion in Solution: Molecular Level Solvation Versus Polarizable Continuum Model Study
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Relative Complexation Energies for Li~+ Ion in Solution: Molecular Level Solvation Versus Polarizable Continuum Model Study

机译:Li〜+离子在溶液中的相对络合能:分子水平溶剂化与可极化连续谱模型研究

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摘要

Relative complexation energies for the lithium cation in acetonitrile and diethyl ether have been studied.Quantum-chemical calculations explicitly describing the solvation of Li+ have been performed based on structures obtained from molecular dynamics simulations. The effect of an increasing number of solvent molecules beyond the first solvation shell has been found to consist in reduction of the differences in complexation energies for different coordination numbers. Explicit-solvation data have served as a benchmark to the results of polarizable continuum model (PCM) calculations. It has been demonstrated that the PCM approach can yield relative complexation energies comparable to the predictions based on molecular-level solvation, but at significantly lower computational cost. The best agreement between the explicit-solvation and the PCM results has been obtained when the van der Waals surface was adopted to build the molecular cavity.
机译:研究了乙腈和乙醚中锂阳离子的相对络合能。基于分子动力学模拟获得的结构,进行了明确描述Li +溶剂化的量子化学计算。已经发现,增加溶剂分子的数量超出第一溶剂化壳的作用在于减少不同配位数的络合能的差异。显式溶剂化数据已成为可极化连续体模型(PCM)计算结果的基准。已经证明,PCM方法可以产生与基于分子水平溶剂化的预测结果相当的相对络合能,但计算成本却大大降低。当采用范德华表面建立分子腔时,已经获得了显式溶剂化和PCM结果之间的最佳一致性。

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