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Quantum Mechanical Modeling of the Interactions between Noble Metal (Ag and Au) Nanoclusters and Water with the Effective Fragment Potential Method

机译:有效碎片电位法对贵金属(Ag和Au)纳米团簇与水相互作用的量子力学建模

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Explicit solvent interactions can significantly alter the physical and chemical properties of noble metal (e.g ., gold and silver) nanoclusters. In order to compute these solvent interactions at a reasonable computational cost, a quantum mechanical (QM)/molecular mechanics (MM) approach, where the metal nanocluster is treated with full QM and the water molecules are treated with a MM force field, can be used. However, classical MM force fields were typically parameterized using molecules containing main group elements as the reference. The accuracy of noble metal–solvent interactions obtained with these force fields therefore remains unpredictable. The effective fragment potential (EFP) force field, designed to model explicitly solvated systems, represents an attractive method to simulate solvated noble metal nanoclusters because it is derived from first principles and contains few or no fitted parameters, depending on implementation. At the density functional theory-optimized geometries, good correlation is obtained between the nanocluster–water interaction energies computed with EFP and those computed with the reference coupled cluster singles, doubles, and perturbative triples method. It is shown that the EFP method gives qualitatively accurate interaction energies at medium–large intermolecular distances for various molecular configurations. In order to achieve higher quantitative accuracy, the first solvation shell should be treated with full QM, if possible. EFP is therefore a promising method for the QM modeling of explicitly solvated silver and gold nanoclusters.
机译:显式的溶剂相互作用可以显着改变贵金属(例如金和银)纳米团簇的物理和化学性质。为了以合理的计算成本计算这些溶剂的相互作用,可以采用量子力学(QM)/分子力学(MM)方法,其中对金属纳米团簇进行完全QM处理,并对水分子进行MM力场处理。用过的。但是,典型的MM力场通常使用包含主族元素的分子作为参考进行参数化。因此,通过这些力场获得的贵金属与溶剂相互作用的准确性仍然无法预测。有效片段电势(EFP)力场(旨在对显式溶剂化的系统进行建模)代表了一种模拟溶剂化的贵金属纳米团簇的有吸引力的方法,因为它源自第一性原理,并且包含很少或没有合适的参数,具体取决于实现方式。在密度泛函理论优化的几何结构中,使用EFP计算的纳米团簇-水相互作用能与使用参考耦合团簇单,双和扰动三元法计算的能量之间具有良好的相关性。结果表明,对于各种分子构型,EFP方法在中等至较大的分子间距离处都能获得定性准确的相互作用能。为了获得更高的定量准确性,如果可能的话,应该对第一溶剂化壳进行完全QM处理。因此,EFP是一种用于显式溶剂化的银和金纳米团簇的质量管理建模的有前途的方法。

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