首页> 外文期刊>Journal of chemical theory and computation: JCTC >Structure and Dynamics of Liquid Water from ab Initio Molecular Dynamics—Comparison of BLYP, PBE, and revPBE Density Functionals with and without van der Waals Corrections
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Structure and Dynamics of Liquid Water from ab Initio Molecular Dynamics—Comparison of BLYP, PBE, and revPBE Density Functionals with and without van der Waals Corrections

机译:从头开始进行分子动力学研究液态水的结构和动力学-进行和不进行范德华校正的BLYP,PBE和revPBE密度泛函的比较

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摘要

We investigate the accuracy provided by different treatments of the exchange and correlation effects, in particular the London dispersion forces, on the properties of liquid water using ab initio molecular dynamics simulations with density functional theory. The lack of London dispersion forces in generalized gradient approximations (GGAs) is remedied by means of dispersion-corrected atom-centered potentials (DCACPs) or damped atom-pairwise dispersion corrections of the C6R~(-6) form. We compare results from simulations using GGA density functionals (BLYP, PBE, and revPBE) with data from their van der Waals (vdW) corrected counterparts. As pointed out previously, all vdW-corrected BLYP simulations give rise to highly mobile water whose softened structure is closer to experimental data than the one predicted by the bare BLYP functional. Including vdW interactions in the PBE functional, on the other hand, has little influence on both structural and dynamical properties of water. Augmenting, the revPBE functional with either damped atom-pairwise dispersion corrections or DCACP evokes opposite behaviors. The former further softens the already under-structured revPBE water, whereas the latter makes it more glassy. These results demonstrate the delicacy needed in describing weak interactions in molecular liquids.
机译:我们使用密度泛函理论从头算分子动力学模拟研究了交换和相关效应,特别是伦敦分散力,对液体的性质所进行的不同处理所提供的准确性。借助于色散校正的原子中心电位(DCACP)或C6R〜(-6)形式的阻尼原子对色散校正,可以弥补广义梯度近似(GGAs)中伦敦色散力的不足。我们将使用GGA密度函数(BLYP,PBE和revPBE)的仿真结果与经过范德华(vdW)校正的对等物的数据进行比较。如前所述,所有经过vdW校正的BLYP模拟都产生了高度流动的水,其软化结构比裸露的BLYP功能所预测的更接近实验数据。另一方面,在PBE功能中包括vdW相互作用对水​​的结构和动力学特性几乎没有影响。增强后,带有阻尼原子对色散校正或DCACP的revPBE功能引发了相反的行为。前者进一步软化了已经结构不足的revPBE水,而后者则使它变得更加玻璃状。这些结果证明了描述分子液体中弱相互作用所需的美味。

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