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Density-functional theory-symmetry-adapted intermoleeular perturbation theory with density fitting:A new efficient method to study intermoleeular interaction energies

机译:具有密度拟合的密度泛函理论-对称对称分子间微扰理论:研究分子间相互作用能的一种新的有效方法

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The previously developed DFT-SAPT approach,which combines symmetry-adapted intermoleeular perturbation theory(SAPT)with a density-functional theory(DFT)representation of the monomers,has been implemented by using density fitting of two-electron objects.This approach,termed DF-DFT-SAPT,scales with the fifth power of the molecular size and with the third power upon increase of the basis set size for a given dimer,thus drastically reducing the cost of the conventional DFT-SAPT method.The accuracy of the density fitting approximation has been tested for the ethyne dimer.It has been found that the errors in the interaction energies due to density fitting are below 10~3 kcal/mol with suitable auxiliary basis sets and thus one or two orders of magnitude smaller than the errors due to the use of a limited atomic orbital basis set.An investigation of three prominent structures of the benzene dimer,namely,the T shaped,parallel displaced,and sandwich geometries,employing basis sets of up to augmented quadruple-zeta quality shows that DF-DFT-SAPT outperforms second-order Mo11er-Plesset theory(MP2)and gives total interaction energies which are close to the best estimates infered from combining the results of MP2 and coupled-cluster theory with single,double,and perturbative triple excitations.
机译:以前开发的DFT-SAPT方法是将对称的分子间微扰理论(SAPT)与单体的密度泛函理论(DFT)表示相结合,它是通过两电子对象的密度拟合实现的。对于给定的二聚体,DF-DFT-SAPT随分子大小的五次方缩放,而随着基数大小的增加,随三次方缩放,从而大大降低了传统DFT-SAPT方法的成本。密度的准确性对乙炔二聚体进行了拟合拟合测试,发现在合适的辅助基础下,密度拟合所产生的相互作用能的误差低于10〜3 kcal / mol,因此比误差小一个或两个数量级由于使用了有限的原子轨道基组。对苯二聚体的三个突出结构,即T形,平行位移和夹心几何结构进行了研究,采用了高达Augme的基组稳定的四重zeta质量表明DF-DFT-SAPT优于二阶Mo11er-Plesset理论(MP2),并且给出的总相互作用能接近将MP2和耦合簇理论的结果与单个结果相结合得出的最佳估计值。双重和摄动三次激发。

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