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Long-range corrected density functionals combined with local response dispersion: A promising method for weak interactions

机译:远程校正的密度泛函与局部响应离散相结合:弱相互作用的一种有前途的方法

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摘要

Density functional theory, in general, is considered to underestimate the weak van der Waals type of intermolecular interactions. We optimized parameters of the local response dispersion (LRD) method applied to the long-range corrected exchange-correlation functionals (LC-BOP12+LRD and LCgau-BOP+LRD) on the interaction energy for the complexes in the recently compiled S66 database and found to be comparable with the high-level wave function-based methods reported in ?ezá? et al. (J. Chem. Theory Comput. 2011, 7, 2427). Our calculations with the S66 intermolecular complexes at equilibrium geometries suggests that the LC-BOP12+LRD and LCgau-BOP+LRD are well-balanced and lower cost alternatives to the methods reported in the database. Further, test on the S66X8 database (with eight nonequilibrium points) and the HBC6 and NBC10 database shows LC+LRD method with newly optimized parameters is a promising candidate for dealing such weak interactions. Finally, the new parameterized LC+LRD method was tested on X40 benchmark halogenated complexes.
机译:通常,密度泛函理论被认为低估了分子间相互作用的弱范德华类型。在最近编译的S66数据库中,我们优化了适用于远程校正交换相关函数(LC-BOP12 + LRD和LCgau-BOP + LRD)的相互作用能的局部响应弥散(LRD)方法的参数,以及被发现与?ezá?中报道的基于高级波动函数的方法具有可比性等。 (J.Chem.Theory Comput.2011,7,2427)。我们用S66分子间络合物在平衡几何条件下的计算表明,LC-BOP12 + LRD和LCgau-BOP + LRD具有很好的平衡性,是数据库中报告方法的低成本替代品。此外,在S66X8数据库(具有八个非平衡点)以及HBC6和NBC10数据库上进行的测试表明,具有新优化参数的LC + LRD方法是解决此类弱相互作用的有前途的候选方法。最后,在X40基准卤代配合物上测试了新的参数化LC + LRD方法。

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