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Double-Hybrid DFT Functionals for the Condensed Phase: Gaussian and Plane Waves Implementation and Evaluation

机译:凝聚阶段的双混合DFT功能:高斯和平面波的实施和评估

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摘要

Intermolecular interactions play an important role for the understanding of catalysis, biochemistry and pharmacy. Double-hybrid density functionals (DHDFs) combine the proper treatment of short-range interactions of common density functionals with the correct description of long-range interactions of wave-function correlation methods. Up to now, there are only a few benchmark studies available examining the performance of DHDFs in condensed phase. We studied the performance of a small but diverse selection of DHDFs implemented within Gaussian and plane waves formalism on cohesive energies of four representative dispersion interaction dominated crystal structures. We found that the PWRB95 and ωB97X-2 functionals provide an excellent description of long-ranged interactions in solids. In addition, we identified numerical issues due to the extreme grid dependence of the underlying density functional for PWRB95. The basis set superposition error (BSSE) and convergence with respect to the super cell size are discussed for two different large basis sets.
机译:分子间相互作用对催化作用,生物化学和药房的理解发挥着重要作用。双混合密度函数(DHDFS)将共同密度函数的正确处理与波函数相关方法的远程相互作用的正确描述相结合。到目前为止,只有几项基准研究可用于检查DHDFS在冷凝阶段的性能。我们研究了在高斯和平面波形形式中实施的小但多样化的DHDFS选择的性能,在四个代表性分散相互作用主导晶体结构的粘性能量上实现。我们发现PWRB95和ωB97X-2功能提供了固体中长距离相互作用的优异描述。此外,我们识别由于PWRB95的底层密度函数的极端栅格依赖性导致的数值问题。对于两种不同的大基集,讨论了基础集叠加错误(BSSE)和相对于超级小区大小的收敛。

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