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      Importance of the Kinetic Energy Density for Band Gap Calculations in Solids with Density Functional Theory

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      The Journal of Physical Chemistry. a
      American Chemical Society

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          Abstract

          Recently, exchange-correlation potentials in density functional theory were developed with the goal of providing improved band gaps in solids. Among them, the semilocal potentials are particularly interesting for large systems since they lead to calculations that are much faster than with hybrid functionals or methods like GW. We present an exhaustive comparison of semilocal exchange-correlation potentials for band gap calculations on a large test set of solids, and particular attention is paid to the potential HLE16 proposed by Verma and Truhlar. It is shown that the most accurate potential is the modified Becke–Johnson potential, which, most noticeably, is much more accurate than all other semilocal potentials for strongly correlated systems. This can be attributed to its additional dependence on the kinetic energy density. It is also shown that the modified Becke–Johnson potential is at least as accurate as the hybrid functionals and more reliable for solids with large band gaps.

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          Most cited references57

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          Generalized Gradient Approximation Made Simple.

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            Physical Content of the Exact Kohn-Sham Orbital Energies: Band Gaps and Derivative Discontinuities

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              Generalized Kohn-Sham schemes and the band-gap problem

                Author and article information

                Journal
                J Phys Chem A
                J Phys Chem A
                jx
                jpcafh
                The Journal of Physical Chemistry. a
                American Chemical Society
                1089-5639
                1520-5215
                12 April 2017
                04 May 2017
                : 121
                : 17
                : 3318-3325
                Affiliations
                [1]Institute of Materials Chemistry, Vienna University of Technology , Getreidemarkt 9/165-TC, A-1060 Vienna, Austria
                Author notes
                Article
                10.1021/acs.jpca.7b02882
                5423078
                28402113
                71ae3e7e-0f99-4069-9be8-875a29c0fc53
                Copyright © 2017 American Chemical Society

                This is an open access article published under a Creative Commons Attribution (CC-BY) License, which permits unrestricted use, distribution and reproduction in any medium, provided the author and source are cited.

                History
                : 11 April 2017
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                Custom metadata
                jp7b02882
                jp-2017-02882a

                Physical chemistry
                Physical chemistry

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