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Accurate description of torsion potentials in conjugated polymers using density functionals with reduced self-interaction error

  • We investigate the torsion potentials in two prototypical pi-conjugated polymers, polyacetylene and polydiacetylene, as a function of chain length using different flavors of density functional theory. Our study provides a quantitative analysis of the delocalization error in standard semilocal and hybrid density functionals and demonstrates how it can influence structural and thermodynamic properties. The delocalization error is quantified by evaluating the many-electron self-interaction error (MESIE) for fractional electron numbers, which allows us to establish a direct connection between the MESIE and the error in the torsion barriers. The use of non-empirically tuned long-range corrected hybrid functionals results in a very significant reduction of the MESIE and leads to an improved description of torsion barrier heights. In addition, we demonstrate how our analysis allows the determination of the effective conjugation length in polyacetylene and polydiacetylene chains.

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Metadaten
Author details:Christopher Sutton, Thomas Körzdörfer, Matthew T. Gray, Max Brunsfeld, Robert M. Parrish, C. David Sherrill, John S. Sears, Jean-Luc Bredas
DOI:https://doi.org/10.1063/1.4863218
ISSN:0021-9606
ISSN:1089-7690
Pubmed ID:https://pubmed.ncbi.nlm.nih.gov/24511943
Title of parent work (English):The journal of chemical physics : bridges a gap between journals of physics and journals of chemistr
Publisher:American Institute of Physics
Place of publishing:Melville
Publication type:Article
Language:English
Year of first publication:2014
Publication year:2014
Release date:2017/03/27
Volume:140
Issue:5
Number of pages:9
Funding institution:National Science Foundation [DMR-0819885, DMR-0120967, CHE-0946869, CHE-1300497]
Organizational units:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Chemie
Peer review:Referiert
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