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A density functional for sparse matter

Journal of Physics Condensed Matter · 2009 · Vol. 21(8) · pp. 084203–084203
David C. LangrethBengt I. LundqvistSvetla D. Chakarova-KäckValentino R. CooperM. DionPer HyldgaardAndré K. KelkkanenJesper KleisLingzhu KongShen LiP G MosesÉamonn MurrayAaron PuzderHanna A. RydbergElsebeth SchröderTimo Thonhauser

Abstract

Sparse matter is abundant and has both strong local bonds and weak nonbonding forces, in particular nonlocal van der Waals (vdW) forces between atoms separated by empty space. It encompasses a broad spectrum of systems, like soft matter, adsorption systems and biostructures. Density-functional theory (DFT), long since proven successful for dense matter, seems now to have come to a point, where useful extensions to sparse matter are available. In particular, a functional form, vdW-DF (Dion et al 2004 Phys. Rev. Lett. 92 246401; Thonhauser et al 2007 Phys. Rev. B 76 125112), has been proposed for the nonlocal correlations between electrons and applied to various relevant molecules and materials, including to those layered systems like graphite, boron nitride and molybdenum sulfide, to dimers of benzene, polycyclic aromatic hydrocarbons (PAHs), doped benzene, cytosine and DNA base pairs, to nonbonding forces in molecules, to adsorbed molecules, like benzene, naphthalene, phenol and adenine on graphite, alumina and metals, to polymer and carbon nanotube (CNT) crystals, and hydrogen storage in graphite and metal-organic frameworks (MOFs), and to the structure of DNA and of DNA with intercalators. Comparison with results from wavefunction calculations for the smaller systems and with experimental data for the extended ones show the vdW-DF path to be promising. This could have great ramifications.

Boron and Carbon Nanomaterials ResearchGraphene research and applicationsSuperconductivity in MgB2 and Alloysvan der Waals forceDensity functional theoryMoleculeChemical physicsGraphiteChemistryCarbon nanotubeBoron nitrideComputational chemistryMaterials science

Funding

  • Lundbeckfonden
  • University of Texas at Dallas
  • Division of Materials Research
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References
Generalized Gradient Approximation Made Simple
Physical Review Letters · 1996 · 205,888 citations
Van der Waals Density Functional for General Geometries
Physical Review Letters · 2004 · 5,523 citations
The exchange-correlation energy of a metallic surface
Solid State Communications · 1975 · 899 citations
Ground State of the Electron Gas by a Stochastic Method
Physical Review Letters · 1980 · 14,143 citations
Exchange-correlation energy of a metallic surface: Wave-vector analysis
Physical review. B, Solid state · 1977 · 1,031 citations
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