The theoretical description of sparse matter attracts much interest, in particular for those ground-state properties that can be described by density functional theory (DFT). One proposed approach, the van der Waals density functional (vdW-DF) method, rests on strong physical foundations and offers simple yet accurate and robust functionals. A very recent functional within this method called vdW-DF-cx [K. Berland and P. Hyldgaard, Phys. Rev. B 89, 035412] stands out in its attempt to use an exchange energy derived from the same plasmon-based theory from which the nonlocal correlation energy was derived. Encouraged by its good performance for solids, layered materials, and aromatic molecules, we apply it to several systems that are characterized by competing interactions. These include the ferroelectric response in PbTiO$_3$, the adsorption of small molecules within metal-organic frameworks (MOFs), the graphite/diamond phase transition, and the adsorption of an aromatic-molecule on the Ag(111) surface. Our results indicate that vdW-DF-cx is overall well suited to tackle these challenging systems. In addition to being a competitive density functional for sparse matter, the vdW-DF-cx construction presents a more robust general purpose functional that could be applied to a range of materials problems with a variety of competing interactions.
翻译:对稀有物质的理论描述引起了很大兴趣,特别是对于密度功能理论(DFT)可以描述的地表状态特性而言。一种拟议方法,即范德华密度功能(VdW-DF)法,基于坚实的物理基础,提供简单而准确和稳健的功能。在这种方法中,最近的一种功能称为vdW-DF-cx[K.Berland和P.Hyldgaard,Phyldgaard.Rev.B89,035412],在试图利用来自非本地相关能源来源的同一光谱理论的交换能量方面表现突出。一种拟议方法,即van der der Waals密度功能功能(VdW-DF-DF)方法,由于在固体、分层材料和芳香分子方面的相互竞争表现良好,我们将其应用于以相互竞争互动为特点的若干系统,其中包括PbtiO$3美元的铁电反应、金属-有机框架内小分子的吸附(MOFs),图形/钻石阶段的过渡,以及在Agl(111)表面对芳质的吸附。我们的功能-DFS-DFS-dx结构中,我们的结果表明,具有竞争力的密度-d-d-d-drod-d-d-d-de-d-d-dx的特性的特性的特性的特性是适应于这些特性-d-d-d-d-d-d-d-d-d-d-d-d-d-d-d-d-d-d-d-d-d-d-d-d-d-d-d-d-d-d-real-d-real-real-d-d-d-d-d-d-d-d-d-d-d-d-d-real-d-d-d-d-d-d-d-real-d-comm-d-d-d-d-d-d-d-d-d-d-d-d-d-d-d-d-d-d-d-d-d-de-d-d-d-d-de-de-de-de-de-de-de-de-de-d-d-d-d-d-