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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Prediction of pK(a)s of Late Transition-Metal Hydrides via a QM/QM Approach
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Prediction of pK(a)s of Late Transition-Metal Hydrides via a QM/QM Approach

机译:通过QM / QM方法预测晚期过渡 - 金属氢化物的PK(A)S.

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Three implicit solvation models, the conductor-like polarizable continuum model (C-PCM), the conductor-like screening model (COSMO), and universal implicit solvent model (SMD), combined with a hybrid two layer QM/QM approach (ONIOM), were utilized to calculate the pK(a) values, using a direct thermodynamic scheme, of a set of Group 10 transition metal (TM) hydrides in acetonitrile. To obtain the optimal combination of quantum methods for ONIOM calculations with implicit solvation models, the influence of factors, such as the choice of density functional and basis set, the atomic radii used to build a cavity in the solvent, and the size of the model system in an ONIOM scheme, was examined. Additionally, the impact of Grimme's empirical dispersion correction and exact exchange was also investigated. The results were calibrated by experimental data. This investigation provides insight about effective models for the prediction of thermodynamic properties of TM-containing complexes with bulky ligands. (C) 2019 Wiley Periodicals, Inc.
机译:三种隐式求解模型,导体式可极化连续体模型(C-PCM),导体样屏蔽模型(COSMO)和通用的隐式溶剂模型(SMD),与混合动力两层QM / QM方法(ONIOM)相结合使用在乙腈中使用直接热力学方案的直接热力学方案计算PK(A)值,其乙腈中的一组10过渡金属(TM)氢化物。为了获得具有隐式溶剂化模型的Oniom计算的量子方法的最佳组合,因素的影响,例如密度函数和基础集的选择,原子半径用于在溶剂中构建腔,以及模型的尺寸审查了oniom方案中的系统。此外,还研究了Grimme的经验分散校正和确切交换的影响。结果通过实验数据校准。本研究提供了有关预测含TM复合物的热力学性质的有效模型的洞察力,提供了庞大的配体的有效模型。 (c)2019 Wiley期刊,Inc。

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