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Unified Assessment of the Effects of Van der Waals Interactions on the Structural and Electronic Properties of Some Layered Organic Solids κ-(BEDT-TTF)2X

机译:统一评估Van der Waals相互作用对一些分层有机固体κ-(床站-TTF)2x的结构和电子性质

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摘要

Proper inclusion of van der Waals interactions (vdW) in ab initio calculations based on the density functional theory (DFT) is crucial to describe soft, organic, layered solids such as κ -(BEDT-TTF) 2 X . Since no consensus has been reached on the reliability of available vdW DFT functionals, most of the first principles calculations have been based on experimental crystal structure data without any structural optimization. Here, we explore optimal DFT-based schemes that account for the effects of vdW interactions on the structural and electronic band properties of three paradigmatic charge transfer salts, κ -(BEDT-TTF) 2 Cu 2 (CN) 3 , κ -(BEDT-TTF) 2 Ag 2 (CN) 3 , and κ -(BEDT-TTF) 2 Cu[N(CN) 2 ]Cl, for which a unified optimization of the structure is possible. Detailed examination of the prototype test system κ -(BEDT-TTF) 2 Cu[N(CN) 2 ]Cl shows that the optB88-vdW functional performs slightly better than the PBE-vdW and that the choice of pseudopotentials is critical to obtaining realistic results.
机译:基于密度泛函理论(DFT)的AB初始计算中的van DAR WAALS相互作用(VDW)是至关重要的,描述柔软的有机层状固体,如κ - (卧床TTF)2 x。由于没有达成可用VDW DFT功能的可靠性,因此大多数原则计算基于实验晶体结构数据而没有任何结构优化。在此,我们探讨了最佳的基于DFT的方案,该方案考虑了VDW相互作用对三种范式电荷转移盐,κ - (床T-TTF)2 Cu 2(CN)3,κ - (卧床)的结构和电子带性能的影响-TTF)2 Ag 2(CN)3,和κ - (卧TTF)2 Cu [N(CN)2] Cl,其具有统一的结构优化。对原型测试系统的详细检查κ - (卧床TTF)2 Cu [n(CN)2] CL表明,OPTB88-VDW功能略好于PBE-VDW,并且伪能量的选择对于获得现实至关重要结果。

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