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  4. DFT with corrections for an efficient and accurate description of strong electron correlations in NiO
 
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2023
Journal Article
Title

DFT with corrections for an efficient and accurate description of strong electron correlations in NiO

Abstract
An efficient and accurate description of the electronic structure of a strongly correlated metal-oxide semiconductor like NiO has been notoriously difficult. Here, we study the capabilities and limitations of two frequently employed correction schemes, a DFT+U on-site correction and a DFT+1/2 self-energy correction. While both methods individually are unable to provide satisfactory results, in combination they provide a very good description of all relevant physical quantities. Since both methods cope with different shortcomings of common density-functional theory (DFT) methods (using local-density or generalized-gradient approximations), their combination is not mutually dependent and remains broadly applicable. The combined approach retains the computational efficiency of DFT calculations while providing significantly improved predictive power.
Author(s)
Gebhardt, Julian
Fraunhofer-Institut für Werkstoffmechanik IWM  
Elsässer, Christian
Fraunhofer-Institut für Werkstoffmechanik IWM  
Journal
Journal of Physics. Condensed Matter  
Project(s)
Lebende, adaptive und energieautonome Materialsysteme (livMatS)  
Materialien für nachhaltige Tandemsolarzellen mit höchster Umwandlungseffizienz
Funder
Deutsche Forschungsgemeinschaft -DFG-, Bonn  
Fraunhofer-Gesellschaft zur Förderung der angewandten Forschung e.V.  
Open Access
DOI
10.1088/1361-648X/acc0be
Additional full text version
Landing Page
Language
English
Fraunhofer-Institut für Werkstoffmechanik IWM  
Keyword(s)
  • density-functional theory

  • electron correlation

  • NiO

  • transparent conducting oxides

  • computation theor

  • computational efficiency

  • electron correlations

  • electronic structure

  • MOS devices

  • oxide semiconductors

  • transparent conducting oxides

  • Zinc oxide

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