Density Functional Theory Evaluated for Structural and Electronic Properties of 1T-LixTiS2 and Lithium Ion Migration in 1T-Li0.94TiS2

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dc.identifier.uri http://dx.doi.org/10.15488/2235
dc.identifier.uri http://www.repo.uni-hannover.de/handle/123456789/2261
dc.contributor.author Werth, Vanessa
dc.contributor.author Volgmann, Kai
dc.contributor.author Islam, Mazharul M.
dc.contributor.author Heitjans, Paul
dc.contributor.author Bredow, Thomas
dc.date.accessioned 2017-11-10T17:19:20Z
dc.date.available 2018-05-05T22:05:13Z
dc.date.issued 2017
dc.identifier.citation Werth, V.; Volgmann, K.; Islam, M.M.; Heitjans, P.; Bredow, T.: Density Functional Theory Evaluated for Structural and Electronic Properties of 1T-LixTiS2 and Lithium Ion Migration in 1T-Li0.94TiS2. In: Zeitschrift für Physikalische Chemie 231 (2017), S. 1263-1278. DOI: https://doi.org/10.1515/zpch-2016-0919
dc.description.abstract In many applications it has been found that the standard generalized gradient approximation (GGA) does not accurately describe weak chemical bond and electronic properties of solids containing transition metals. In this work, we have considered the intercalation material 1T-LixTiS2 (0≤x≤1) as a model system for the evaluation of the accuracy of GGA and corrected GGA with reference to the availabile experimental data. The influence of two different dispersion corrections (D3 and D-TS) and an on-site Coulomb repulsion term (GGA+U) on the calculated structural and electronic properties is tested. All calculations are based on the Perdew-Burke-Ernzerhof (PBE) functional. An effective U value of 3.5 eV is used for titanium. The deviation of the calculated lattice parameter c for TiS2 from experiment is reduced from 14 % with standard PBE to −2 % with PBE+U and Grimme’s D3 dispersion correction. 1T-TiS2 has a metallic ground state at PBE level whereas PBE+U predicts an indirect gap of 0.19 eV in agreement with experiment. The 7Li chemical shift and quadrupole coupling constants are in reasonable agreement with the experimental data only for PBE+U-D3. An activation energy of 0.4 eV is calculated with PBE+U-D3 for lithium migration via a tetrahedral interstitial site. This result is closer to experimental values than the migration barriers previously obtained at LDA level. The proposed method PBE+U-D3 gives a reasonable description of structural and electronic properties of 1T-LixTiS2 in the whole range 0≤x≤1. © 2017 Walter de Gruyter GmbH, Berlin/Boston 2017. eng
dc.language.iso eng
dc.publisher Berlin : Walter de Gruyter
dc.relation.ispartofseries Zeitschrift für Physikalische Chemie 231 (2017)
dc.rights Es gilt deutsches Urheberrecht. Das Dokument darf zum eigenen Gebrauch kostenfrei genutzt, aber nicht im Internet bereitgestellt oder an Außenstehende weitergegeben werden.
dc.subject band structure eng
dc.subject chemical shift eng
dc.subject DFT+U eng
dc.subject dispersion correction eng
dc.subject Li ion diffusion eng
dc.subject lithium titanium disulfide eng
dc.subject migration barrier eng
dc.subject quadrupole coupling constant eng
dc.subject.ddc 540 | Chemie ger
dc.subject.ddc 530 | Physik ger
dc.title Density Functional Theory Evaluated for Structural and Electronic Properties of 1T-LixTiS2 and Lithium Ion Migration in 1T-Li0.94TiS2 eng
dc.type Article
dc.type Text
dc.relation.issn 09429352
dc.relation.doi https://doi.org/10.1515/zpch-2016-0919
dc.bibliographicCitation.volume 231
dc.bibliographicCitation.firstPage 1263
dc.bibliographicCitation.lastPage 1278
dc.description.version publishedVersion
tib.accessRights frei zug�nglich


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