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首页> 外文期刊>The Journal of Chemical Physics >The explicitly correlated same number of optimized parameters (SNOOP-F12) scheme for calculating intermolecular interaction energies
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The explicitly correlated same number of optimized parameters (SNOOP-F12) scheme for calculating intermolecular interaction energies

机译:用于计算分子间交互能量的明确相关相同数量的优化参数(Snoop-F12)方案

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摘要

We augment the recently introduced same number of optimized parameters (SNOOP) scheme [K. Kristensen et al., J. Chem. Phys. 142, 114116 (2015)] for calculating interaction energies of molecular dimers with an F12 correction and generalize the method to enable the determination of interaction energies of general molecular clusters. The SNOOP, uncorrected (UC), and counterpoise (CP) schemes with/without an F12 correction are compared for the S22 test set of Jure. cka et al. [Phys. Chem. Chem. Phys. 8, 1985 (2006)]-which consists of 22 molecular dimers of biological importance-and for water and methane molecular clusters. The calculations have been performed using the Resolution of the Identity second-order Moller-Plesset perturbation theory method. We conclude from the results that the SNOOP scheme generally yields interaction energies closer to the complete basis set limit value than the UC and CP approaches, regardless of whether the F12 correction is applied or not. Specifically, using the SNOOP scheme with an F12 correction yields the computationally most efficient way of achieving accurate results at low basis set levels. These conclusions hold both for molecular dimers and more general molecular clusters. Published by AIP Publishing.
机译:我们增强了最近引入了相同数量的优化参数(Snoop)方案[K. Kristensen等人。,J.Chem。物理。 142,114116(2015)]为了计算与F12校正的分子二聚体的相互作用能量,并概括了方法以使得能够确定一般分子簇的相互作用能量。将S22测试组的S22测试集进行比较窥探,未校正(UC)和对应(CP)方案(CP)方案,用于Jure的S22测试集。 CKA等人。 [物理。化学。化学。物理。 8,1985(2006)] - 由22个生物重要性 - 和水和甲烷分子簇组成。已经使用了标识二阶Moller-Plesbert理论方法的分辨率来执行计算。我们从结果中得出结论,即窥探方案通常会产生更接近完整基础设定的相互作用能量,而不是UC和CP方法,无论是否施加F12校正。具体地,使用具有F12校正的Snoop方案,产生以低基础设置级别实现准确结果的计算最有效的方式。这些结论适用于分子二聚体和更一般的分子簇。通过AIP发布发布。

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