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Atoms, molecules, solids, and surfaces: Applications of the generalized gradient approximation for exchange and correlation.

TLDR
A way is found to visualize and understand the nonlocality of exchange and correlation, its origins, and its physical effects as well as significant interconfigurational and interterm errors remain.
Abstract
Generalized gradient approximations (GGA's) seek to improve upon the accuracy of the local-spin-density (LSD) approximation in electronic-structure calculations. Perdew and Wang have developed a GGA based on real-space cutoff of the spurious long-range components of the second-order gradient expansion for the exchange-correlation hole. We have found that this density functional performs well in numerical tests for a variety of systems: (1) Total energies of 30 atoms are highly accurate. (2) Ionization energies and electron affinities are improved in a statistical sense, although significant interconfigurational and interterm errors remain. (3) Accurate atomization energies are found for seven hydrocarbon molecules, with a rms error per bond of 0.1 eV, compared with 0.7 eV for the LSD approximation and 2.4 eV for the Hartree-Fock approximation. (4) For atoms and molecules, there is a cancellation of error between density functionals for exchange and correlation, which is most striking whenever the Hartree-Fock result is furthest from experiment. (5) The surprising LSD underestimation of the lattice constants of Li and Na by 3--4 % is corrected, and the magnetic ground state of solid Fe is restored. (6) The work function, surface energy (neglecting the long-range contribution), and curvature energy of a metallic surface are all slightly reduced in comparison with LSD. Taking account of the positive long-range contribution, we find surface and curvature energies in good agreement with experimental or exact values. Finally, a way is found to visualize and understand the nonlocality of exchange and correlation, its origins, and its physical effects.

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Journal ArticleDOI

Copper(II) sorption onto goethite, hematite and lepidocrocite: a surface complexation model based on ab initio molecular geometries and EXAFS spectroscopy

TL;DR: In this article, the adsorption of Cu(II) onto goethite, hematite and lepidocrocite was measured from pH 2 −7. And the results were supported by ab initio (density functional theory) geometries of analogue Fe2(OH)2(H2O)8Cu(OH).
Journal ArticleDOI

Understanding the complex metallic element Mn. I. Crystalline and noncollinear magnetic structure of α-Mn

TL;DR: In this article, an ab initio spin-density functional study of the structural and magnetic properties of manganese is presented, showing that the strange properties of Mn arise from conflicting tendencies to simultaneously maximize according to Hund's rule the magnetic spin moment and the bond strength, as expected for a half-filled d band.
Journal ArticleDOI

Significance of single-electron energies for the description of CO on Pt(111)

TL;DR: In this paper, it is argued that this error is related to the ''gap'' problem of present density functionals and might be cured by functionals that increase the HOMO-LUMO separation.
Journal ArticleDOI

Electronic structures of SiC nanoribbons

TL;DR: Without the aid of external field or chemical modification, the metal-free half-metallicity predicted for narrow SiC zigzag nanoribbons opens a facile way for nanomaterial-based spintronics applications.
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