首页> 外文期刊>International Journal of Quantum Chemistry >DIRECT REACTION FIELD FORCE FIELD - A CONSISTENT WAY TO CONNECT AND COMBINE QUANTUM-CHEMICAL AND CLASSICAL DESCRIPTIONS OF MOLECULES
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DIRECT REACTION FIELD FORCE FIELD - A CONSISTENT WAY TO CONNECT AND COMBINE QUANTUM-CHEMICAL AND CLASSICAL DESCRIPTIONS OF MOLECULES

机译:直接反应场力场-连接和组合分子的量子化学和经典描述的一致方法

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The direct reaction field (DRF) force field gives a classical description of intermolecular interactions based on ab initio quantum-chemical descriptions of matter. The parameters of the DRF force field model molecular electrostatic and response properties, which are represented by distributed charges and dipole polarizabilities. The advantage of the DRF force field is that it can be combined transparently with quantum-chemical descriptions of a part of a large system, such as a molecule in solution or an active site in a protein. In this study, the theoretical basis for the derivation of the parameters is reviewed, paying special attention to the four interaction components: electrostatic, induction, dispersion, and repulsion. The ability of the force field to provide reliable intermolecular interactions is assessed, both in its mixed quantum-chemical-classical and fully classical usage. Specifically, the description of the water dimer and the solvation of water in water is scrutinized and seen to perform well. The force field is also applied to systems of a very different nature, viz. the benzene dimer and substituted-benzene dimers, as well as the acetonitrile and tetrachloromethane dimers. Finally, the solvation of a number of polar solutes in water is investigated. It is found that as far as the interaction energy is concerned, the DRF force field provides a reliable embedding scheme for molecular environments. The calculation of thermodynamic properties, such as solvation energy, requires better sampling of phase space than applied here. (C) 1996 John Wiley & Sons, Inc. [References: 113]
机译:直接反应场(DRF)力场基于物质从头开始的量子化学描述给出了分子间相互作用的经典描述。 DRF力场的参数模拟分子静电和响应特性,这些特性由分布的电荷和偶极极化率表示。 DRF力场的优势在于,它可以与大型系统一部分的量子化学描述(例如溶液中的分子或蛋白质中的活性位点)透明地结合在一起。在这项研究中,回顾了推导参数的理论基础,并特别注意了四个相互作用成分:静电,感应,色散和排斥。力场提供可靠的分子间相互作用的能力,在其混合量子化学经典方法和完全经典方法中都得到了评估。具体而言,对二聚体和水中的水的溶剂化的描述进行了仔细检查,并认为其性能良好。力场也适用于性质非常不同的系统,即。苯二聚体和取代苯二聚体,以及乙腈和四氯甲烷二聚体。最后,研究了许多极性溶质在水中的溶剂化。发现就相互作用能而言,DRF力场为分子环境提供了可靠的嵌入方案。计算热力学性质(例如溶剂化能)需要比此处应用的更好的相空间采样。 (C)1996 John Wiley&Sons,Inc. [参考:113]

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