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Cyclic Carbonate Formation from Epoxides and CO2 Catalyzed by Sustainable Alkali Halide-Glycol Complexes: A DFT Study to Elucidate Reaction Mechanism and Catalytic Activity

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Date
2020-07-28
Author
Butera, Valeria
Detz, Hermann
Altmetrics
10.1021/acsomega.0c01572
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Abstract
We provide a comprehensive DFT investigation of the mechanistic details of CO2 fixation into styrene oxide to form styrene carbonate, catalyzed by potassium iodide-tetraethylene glycol complex. A detailed view on the intermediate steps of the overall reaction clarifies the role of hydroxyl substances as co-catalysts for the alkali halide-catalyzed cycloaddition. The increase of iodide nucleophilicity in presence of tetraethylene glycol is examined and rationalized by NBO and Hirshfeld charge analysis, and bond distances. We explore how different alkali metal salts and glycols affect the catalytic performance. Our results provide important hints on the synthesis of cyclic carbonates from CO2 and epoxides promoted by alkali halides and glycol complexes, allowing the development of more efficient catalysts.
Keywords
DENSITY-FUNCTIONAL THERMOCHEMISTRY, ORGANIC CARBONATES, IONIC LIQUIDS, INTERMOLECULAR INTERACTIONS, PROPYLENE-OXIDE, DIOXIDE, CYCLOADDITION, FIXATION, POLY(OXYETHYLENE), TRANSFORMATION
Persistent identifier
http://hdl.handle.net/11012/201800
Document type
Peer reviewed
Document version
Final PDF
Source
ACS OMEGA. 2020, vol. 5, issue 29, p. 18064-18072.
https://pubs.acs.org/doi/abs/10.1021/acsomega.0c01572
DOI
10.1021/acsomega.0c01572
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  • Epitaxní materiály a nanostruktury [8]
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