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Capturing Many-Body Interactions with Classical DipoleInduction Models

机译:用经典偶极子捕获多体相互作用归纳模型

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摘要

The nonadditive many-body interactions are significant for structural and thermodynamic properties of condensed phase systems. In this work we examined the many-body interaction energy of a large number of common organic/biochemical molecular clusters, which consist of 18 chemical species and cover nine common organic elements, using the Møller–Plesset perturbation theory to the second order (MP2) [Møller et al. Phys. Rev. 1934, 46, 618. []]. We evaluated the capability of Thole-based dipole induction models to capture the many-body interaction energy. Three models were compared: the original model and parameters used by the AMOEBA force field, a variation of this original model where the damping parameters have been reoptimized to MP2 data, and a third model where the damping function form applied to the permanent electric field is modified. Overall, we find the simple classical atomic dipole models are able to capture the 3- and 4-body interaction energy across a wide variety of organic molecules in various intermolecular configurations. With modified Thole models, it is possible to further improve theagreement with MP2 results. These models were also tested on systemscontaining metal/halogen ions to examine the accuracy and transferability.This work suggests that the form of damping function applied to thepermanent electrostatic field strongly affects the distance dependenceof polarization energy at short intermolecular separations.
机译:非加性的多体相互作用对于凝聚相系统的结构和热力学性质很重要。在这项工作中,我们使用Møller–Plesset摄动理论到第二阶(MP2),研究了许多常见的有机/生化分子簇的多体相互作用能,这些簇由18个化学物种组成,涵盖9种常见有机元素。 [Møller等。物理Rev. 1934,46,618. []]。我们评估了基于Thole的偶极子感应模型捕获多体相互作用能的能力。比较了三个模型:原始模型和AMOEBA力场使用的参数,原始模型的变体,其中阻尼参数已重新优化为MP2数据,第三模型,其中将阻尼函数形式应用于永久电场为改性。总的来说,我们发现简单的经典原子偶极子模型能够捕获各种分子间构型的多种有机分子的3和4体相互作用能。使用改良的Thole模型,可以进一步改善与MP2结果一致。这些模型也在系统上进行了测试包含金属/卤素离子以检查准确性和可转移性。这项工作表明阻尼函数的形式适用于永久静电场强烈影响距离依赖性分子间间隔短时极化能的变化

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