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使用非经验泛函评估色散力以优化范德华复合物。

Evaluating dispersion forces for optimization of van der Waals complexes using a non-empirical functional.

作者信息

Arabi Alya A

机构信息

College of Natural and Health Sciences, Zayed University, Abu Dhabi, PO Box 144534, United Arab Emirates

出版信息

Philos Trans A Math Phys Eng Sci. 2016 Nov 13;374(2080). doi: 10.1098/rsta.2016.0145.

Abstract

Modelling dispersion interactions with traditional density functional theory (DFT) is a challenge that has been extensively addressed in the past decade. The exchange-dipole moment (XDM), among others, is a non-empirical add-on dispersion correction model in DFT. The functional PW86+PBE+XDM for exchange, correlation and dispersion, respectively, compromises an accurate functional for thermochemistry and for van der Waals (vdW) complexes at equilibrium and non-equilibrium geometries. To use this functional in optimizing vdW complexes, rather than computing single point energies, it is necessary to evaluate accurate forces. The purpose of this paper is to validate that, along the potential energy surface, the distance at which the energy is minimum is commensurate with the distance at which the forces vanish to zero. This test was validated for 10 rare gas diatomic molecules using various integration grids and different convergence criteria. It was found that the use of either convergence criterion, 10 or 10, in Gaussian09, does not affect the accuracy of computed optimal distances and binding energies. An ultra-fine grid needs to be used when computing accurate energies using generalized gradient approximation functionals.This article is part of the themed issue 'Multiscale modelling at the physics-chemistry-biology interface'.

摘要

用传统密度泛函理论(DFT)对色散相互作用进行建模是一项挑战,在过去十年中已得到广泛研究。其中,交换偶极矩(XDM)是DFT中的一种非经验性附加色散校正模型。分别用于交换、关联和色散的PW86 + PBE + XDM泛函,兼顾了用于热化学以及用于处于平衡和非平衡几何构型的范德华(vdW)复合物的精确泛函。为了在优化vdW复合物时使用此泛函,而不是计算单点能量,有必要评估精确的力。本文的目的是验证,沿着势能面,能量最小处的距离与力消失至零处的距离是相称的。使用各种积分网格和不同收敛标准,对10种稀有气体双原子分子进行了此项测试验证。结果发现,在Gaussian09中使用收敛标准10或10,均不影响计算得到的最优距离和结合能的准确性。使用广义梯度近似泛函计算精确能量时,需要使用超细网格。本文是主题为“物理 - 化学 - 生物学界面的多尺度建模”特刊的一部分。

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Bridging the gaps at the physics-chemistry-biology interface.弥合物理-化学-生物学界面的差距。
Philos Trans A Math Phys Eng Sci. 2016 Nov 13;374(2080). doi: 10.1098/rsta.2016.0335.

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