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A simple and effective solution to the constrained QM/MM simulations

机译:对受约束的QM / MM模拟的简单有效解决方案

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It is a promising extension of the quantum mechanical/molecular mechanical (QM/MM) approach to incorporate the solvent molecules surrounding the QM solute into the QM region to ensure the adequate description of the electronic polarization of the solute. However, the solvent molecules in the QM region inevitably diffuse into the MM bulk during the QM/MM simulation. In this article, we developed a simple and efficient method, referred to as the "boundary constraint with correction (BCC)," to prevent the diffusion of the solvent water molecules by means of a constraint potential. The point of the BCC method is to compensate the error in a statistical property due to the bias potential by adding a correction term obtained through a set of QM/MM simulations. The BCC method is designed so that the effect of the bias potential completely vanishes when the QM solvent is identical with the MM solvent. Furthermore, the desirable conditions, that is, the continuities of energy and force and the conservations of energy and momentum, are fulfilled in principle. We applied the QM/MM-BCC method to a hydronium ion(H3O+) in aqueous solution to construct the radial distribution function (RDF) of the solvent around the solute. It was demonstrated that the correction term fairly compensated the error and led the RDF in good agreement with the result given by an ab initio molecular dynamics simulation. Published by AIP Publishing.
机译:它是量子机械/分子机械(QM / mm)方法的有希望的延伸,以将QM溶质溶剂的溶剂分子掺入QM区域中,以确保溶质的电子极化的足够描述。然而,QM区域中的溶剂分子在QM / mm模拟期间不可避免地扩散到MM体中。在本文中,我们开发了一种简单而有效的方法,称为“具有校正(BCC)的边界约束”,以防止溶剂水分子扩散通过约束潜力。 BCC方法的点是通过添加通过一组QM / MM仿真获得的校正项来补偿统计特性的误差。设计BCC方法,使得当QM溶剂与MM溶剂相同时偏置电位的效果完全消失。此外,原则上,理想的条件,即能量和力的连续性以及能量和动量的节约,都是满足的。我们将QM / MM-BCC方法应用于水溶液中的氢鎓离子(H3O +),以构建溶质周围溶剂的径向分布函数(RDF)。据证明,校正项相当补偿了误差,并与AB Initio分子动力学模拟给出的结果良好地达成了RDF。通过AIP发布发布。

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