Fundamental gap of molecular crystals via constrained density functional theory

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2016Access:
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Droghetti A, Rungger I, Das Pemmaraju C, Sanvito S, Fundamental gap of molecular crystals via constrained density functional theory, Physical Review B - Condensed Matter and Materials Physics, 93, 19, 2016, 195208-Download Item:
Abstract:
The energy gap of a molecular crystal is one of the most important properties since it determines the crystal
charge transport when the material is utilized in electronic devices. This is, however, a quantity difficult to
calculate and standard theoretical approaches based on density functional theory (DFT) have proven unable to
provide accurate estimates. In fact, besides the well-known band-gap problem, DFT completely fails in capturing
the fundamental gap reduction occurring when molecules are packed in a crystal structures. The failure has to
be associated with the inability of describing the electronic polarization and the real space localization of the
charged states. Here we describe a scheme based on constrained DFT, which can improve upon the shortcomings
of standard DFT. The method is applied to the benzene crystal, where we show that accurate results can be
achieved for both the band gap and also the energy level alignment.
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http://people.tcd.ie/sanvitoshttp://people.tcd.ie/droghea
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PUBLISHEDExport Date: 5 January 2017
Author: Sanvito, Stefano; Droghetti, Andrea
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Physical Review B - Condensed Matter and Materials Physics93
19
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molecular crystalDOI:
http://dx.doi.org/10.1103/PhysRevB.93.195208Metadata
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