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Size-Dependence of Nonempirically Tuned DFT Starting Points for G(0)W(0) Applied to pi-Conjugated Molecular Chains

  • G(0)W(0) calculations for predicting vertical ionization potentials (IPs) and electron affinities of molecules and clusters are known to show a significant dependence on the density functional theory (DFT) starting point. A number of nonempirical procedures to find an optimal starting point have been proposed, typically based on tuning the amount of HF exchange in the underlying hybrid functional specifically for the system at hand. For the case of pi-conjugated molecular chains, these approaches lead to a significantly different amount of HF exchange for different oligomer sizes. In this study, we analyze if and how strongly this size dependence affects the ability of nonempirical tuning approaches to predict accurate IPs for pi-conjugated molecular chains of increasing chain length. To this end, we employ three different nonempirical tuning procedures for the G(0)W(0) starting point to calculate the IP of polyene oligomers up to 22 repeat units and compare the results to highly accurate coupled-cluster calculations. We find that,G(0)W(0) calculations for predicting vertical ionization potentials (IPs) and electron affinities of molecules and clusters are known to show a significant dependence on the density functional theory (DFT) starting point. A number of nonempirical procedures to find an optimal starting point have been proposed, typically based on tuning the amount of HF exchange in the underlying hybrid functional specifically for the system at hand. For the case of pi-conjugated molecular chains, these approaches lead to a significantly different amount of HF exchange for different oligomer sizes. In this study, we analyze if and how strongly this size dependence affects the ability of nonempirical tuning approaches to predict accurate IPs for pi-conjugated molecular chains of increasing chain length. To this end, we employ three different nonempirical tuning procedures for the G(0)W(0) starting point to calculate the IP of polyene oligomers up to 22 repeat units and compare the results to highly accurate coupled-cluster calculations. We find that, despite its size dependence, using an IP-tuned hybrid functional as a starting point for G(0)W(0) yields excellent agreement with the reference data for all chain lengths.show moreshow less

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Metadaten
Author details:Juliana Bois, Thomas Koerzdoerfer
DOI:https://doi.org/10.1021/acs.jctc.7b00557
ISSN:1549-9618
ISSN:1549-9626
Pubmed ID:https://pubmed.ncbi.nlm.nih.gov/28862849
Title of parent work (English):Journal of chemical theory and computation
Publisher:American Chemical Society
Place of publishing:Washington
Publication type:Article
Language:English
Year of first publication:2017
Publication year:2017
Release date:2020/04/20
Volume:13
Number of pages:10
First page:4962
Last Page:4971
Organizational units:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Biochemie und Biologie
Peer review:Referiert
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