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SCAN+rVV10: A promising van der Waals density functional

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arxiv 1510.05712 v2 pith:MNWACSYV submitted 2015-10-19 cond-mat.mtrl-sci cond-mat.softphysics.atm-clusphysics.comp-ph

classification cond-mat.mtrl-scicond-mat.softphysics.atm-clusphysics.comp-ph
keywords scanrvv10densityfunctionalonlyinteractionlayered-structurematerials
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The newly developed "strongly constrained and appropriately normed" (SCAN) meta-generalized-gradient approximation (meta-GGA) can generally improve over the non-empirical Perdew-Burke-Ernzerhof (PBE) GGA not only for strong chemical bonding, but also for the intermediate-range van der Waals (vdW) interaction. However, the long-range vdW interaction is still missing. To remedy this, we propose here pairing SCAN with the non-local correlation part from the rVV10 vdW density functional, with only two empirical parameters. The resulting SCAN+rVV10 yields excellent geometric and energetic results not only for molecular systems, but also for solids and layered-structure materials, as well as the adsorption of benzene on coinage metal surfaces. Especially, SCAN+rVV10 outperforms all current methods with comparable computational efficiencies, accurately reproducing the three most fundamental parameters---the inter-layer binding energies, inter-, and intra-layer lattice constants---for 28 layered-structure materials. Hence, we have achieved with SCAN+rVV10 a promising vdW density functional for general geometries, with minimal empiricism.

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Cited by 1 Pith paper

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  1. Exchange-Correlation Functionals in 2D Materials: Applications, Challenges, and Limitations

    cond-mat.mtrl-sci 2025-11 conditional novelty 1.0 of 10

    A review concluding that no exchange-correlation functional works universally in 2D materials, with SCAN/r2SCAN best for structure and magnetism, HSE06 for electronics, GW+BSE for optics, and PBE/PBEsol for thermal transport.

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