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dc.date.accessioned2023-09-06T15:03:19Z
dc.date.available2023-09-06T15:03:19Z
dc.date.created2023-07-31T14:37:10Z
dc.date.issued2023
dc.identifier.citationMannisto, Jere K. Pavlovic, Ljiljana Heikkinen, Johannes Tiainen, Tony Sahari, Aleksi Maier, Norbert Rissanen, Kari Nieger, Martin Hopmann, Kathrin Helen Repo, Timo . N-Heteroaryl Carbamates from Carbon Dioxide via Chemoselective Superbase−Catalysis: Substrate Scope and Mechanistic Investigation. ACS Catalysis. 2023
dc.identifier.urihttp://hdl.handle.net/10852/104453
dc.description.abstractWe report a mild superbase-catalyzed and nitrogen-selective carboxylation of N-heteroaryls, with subsequent alkylation enabling the synthesis of drug-like O-alkyl carbamates in good yields (av. 86%). Our findings suggest a partial revision of the current mechanistic understanding as superbases upon mixing with indoles and azoles generally form uncharged hydrogen-bonded complexes and not ionic salts as previously proposed. However, when these complexes are exposed to CO2, carbamate salts are formed. These can be categorized into two subgroups, stable and fluxional carbamate salts, where the latter undergo fast and reversible CO2 exchange, thus being poor substrates for alkylation. Experiments and DFT calculations indicate that the fluxional behavior is primarily caused by substrate-specific electronic destabilization effects. The degree of destabilization depends on the number of nitrogen atoms within and the functional group substitution on the heterocyclic ring structures. Fluxionality can be compensated for by the use of lower temperatures and/or higher CO2 pressures as both measures stabilize the carbamate salts sufficiently, enabling subsequent alkylation.
dc.description.abstractN-Heteroaryl Carbamates from Carbon Dioxide via Chemoselective Superbase−Catalysis: Substrate Scope and Mechanistic Investigation
dc.languageEN
dc.rightsAttribution 4.0 International
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/
dc.titleN-Heteroaryl Carbamates from Carbon Dioxide via Chemoselective Superbase−Catalysis: Substrate Scope and Mechanistic Investigation
dc.title.alternativeENEngelskEnglishN-Heteroaryl Carbamates from Carbon Dioxide via Chemoselective Superbase−Catalysis: Substrate Scope and Mechanistic Investigation
dc.typeJournal article
dc.creator.authorMannisto, Jere K.
dc.creator.authorPavlovic, Ljiljana
dc.creator.authorHeikkinen, Johannes
dc.creator.authorTiainen, Tony
dc.creator.authorSahari, Aleksi
dc.creator.authorMaier, Norbert
dc.creator.authorRissanen, Kari
dc.creator.authorNieger, Martin
dc.creator.authorHopmann, Kathrin Helen
dc.creator.authorRepo, Timo
cristin.unitcode185,15,12,70
cristin.unitnameHylleraas-senteret
cristin.ispublishedfalse
cristin.fulltextoriginal
cristin.qualitycode2
dc.identifier.cristin2164097
dc.identifier.bibliographiccitationinfo:ofi/fmt:kev:mtx:ctx&ctx_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:journal&rft.jtitle=ACS Catalysis&rft.volume=&rft.spage=&rft.date=2023
dc.identifier.jtitleACS Catalysis
dc.identifier.startpage11509
dc.identifier.endpage11521
dc.identifier.doihttps://doi.org/10.1021/acscatal.3c02362
dc.type.documentTidsskriftartikkel
dc.type.peerreviewedPeer reviewed
dc.source.issn2155-5435
dc.type.versionPublishedVersion
dc.relation.projectNFR/300769
dc.relation.projectSIGMA2/nn9330k
dc.relation.projectSIGMA2/nn4654k
dc.relation.projectNORDFORSK/85378


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