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Exploring the conformational space of cobalt(III)–salen catalyst for CO2/epoxide copolymerization: Effect of quaternary ammonium salts on preference of alternative isomers
  • Dyduch, Karol ;
  • Srebro-Hooper, Monika ;
  • Lee, Bun Yeoul ;
  • Michalak, Artur
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Publication Year
2018-09-05
Publisher
John Wiley and Sons Inc.
Citation
Journal of Computational Chemistry, Vol.39, pp.1854-1867
Keyword
bifunctional Co(III) catalystscisβ/trans complexesCo(III)–salen complexesCO2/epoxide copolymerizationconformational space
Mesh Keyword
Bi-functionalComputational protocolsConformational spaceElectronic configurationMolecular dynamics calculationPreference of alternativesQuaternary ammonium saltSalen complex
All Science Classification Codes (ASJC)
Chemistry (all)Computational Mathematics
Abstract
Model catalysts for CO2/epoxide copolymerization based on Co(III) complexes were studied, with focus on the preference of their alternative isomers, cisβ vs. trans. The systems range from model structures without the co-catalyst, as derived from crystallographic data, to complex models with two (CH2)4N+R3 co-catalyst chains (R = Me, Bu) grafted onto a Co(III)–salcy core. To explore the conformational space of the latter complexes, a computational protocol was developed, combining a systematic model-building approach with static and molecular dynamics calculations, and multilevel energy assessment (PM7 and DFT). Results demonstrate an influence of the co-catalyst on the relative stability of the isomers. The cisβ isomer is preferred for complexes without N+-chains and the cisβ ↔ trans isomerization is feasible. Five-coordinate species and open-shell electronic configurations are energetically disfavored. The cisβ preference decreases with the introduction and enlargement of (CH2)4N+R3: both isomers can be populated for R = Me, while the trans isomer is visibly preferred for R = Bu. © 2018 Wiley Periodicals, Inc.
Language
eng
URI
https://dspace.ajou.ac.kr/dev/handle/2018.oak/30390
DOI
https://doi.org/10.1002/jcc.25358
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Type
Article
Funding
This work was financially supported by the research grant awarded by National Science Centre Poland based on the decision DEC-2013/11/B/ST4/00851. We thank the PL-Grid Infrastructure and the Academic Computational Centre Cyfronet of the University of Science and Technology in Krakow for providing computational resources.
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