Unusually Large Effects of Charge-assisted C−H⋅⋅⋅F Hydrogen Bonds to Anionic Fluorine in Organic Solvents: Computational Study of 19F NMR Shifts versus Thermochemistry

dc.contributor.authorKaupp, Martin
dc.contributor.authorSchattenberg, Caspar Jonas
dc.contributor.authorMüller, Robert
dc.contributor.authorReimann, Marc
dc.date.accessioned2022-12-29T09:55:43Z
dc.date.available2022-12-29T09:55:43Z
dc.date.issued2022-08-19
dc.description.abstractA comparison of computed 19F NMR chemical shifts and experiment provides evidence for large specific solvent effects for fluoride-type anions interacting with the σ*(C−H) orbitals in organic solvents like MeCN or CH2Cl2. We show this for systems ranging from the fluoride ion and the bifluoride ion [FHF]− to polyhalogen anions [ClFx]−. Discrepancies between computed and experimental shifts when using continuum solvent models like COSMO or force-field-based descriptions like the 3D-RISM-SCF model show specific orbital interactions that require a quantum-mechanical treatment of the solvent molecules. This is confirmed by orbital analyses of the shielding constants, while less negatively charged fluorine atoms (e. g., in [EF4]−) do not require such quantum-mechanical treatments to achieve reasonable accuracy. The larger 19F solvent shift of fluoride in MeCN compared to water is due to the larger coordination number in the former. These observations are due to unusually strong charge-assisted C−H⋅⋅⋅F− hydrogen bonds, which manifest beyond some threshold negative natural charge on fluorine of ca. < −0.6 e. The interactions are accompanied by sizable free energies of solvation, in the order F−≫[FHF]−>[ClF2]−>[ClF4]−. COSMO-RS solvation free energies tend to moderately underestimate those from the micro-solvated cluster treatment. Red-shifted and intense vibrational C−H stretching bands, potentially accessible in bulk solution, are further spectroscopic finger prints.en
dc.description.sponsorshipDFG, 387284271, SFB 1349: Fluorspezifische Wechselwirkungen: Grundlagen und Anwendungen
dc.description.sponsorshipTU Berlin, Open-Access-Mittel – 2022
dc.identifier.eissn2191-1363
dc.identifier.issn2191-1355
dc.identifier.urihttps://depositonce.tu-berlin.de/handle/11303/17911
dc.identifier.urihttps://doi.org/10.14279/depositonce-16700
dc.language.isoen
dc.relation.ispartof10.14279/depositonce-16677
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/
dc.subject.ddc540 Chemie und zugeordnete Wissenschaftende
dc.subject.otherNMR chemical shiftsen
dc.subject.othersolvation effectsen
dc.subject.otherhydrogen bondingen
dc.subject.otherdensity functional theoryen
dc.subject.othersolvation free energyen
dc.titleUnusually Large Effects of Charge-assisted C−H⋅⋅⋅F Hydrogen Bonds to Anionic Fluorine in Organic Solvents: Computational Study of 19F NMR Shifts versus Thermochemistryen
dc.typeArticle
dc.type.versionpublishedVersion
dcterms.bibliographicCitation.articlenumbere202200146
dcterms.bibliographicCitation.doi10.1002/open.202200146
dcterms.bibliographicCitation.issue12
dcterms.bibliographicCitation.journaltitleChemistryOpen
dcterms.bibliographicCitation.originalpublishernameWiley
dcterms.bibliographicCitation.originalpublisherplaceNew York, NY
dcterms.bibliographicCitation.volume11
dcterms.rightsHolder.referenceCreative-Commons-Lizenz
tub.accessrights.dnbfree
tub.affiliationFak. 2 Mathematik und Naturwissenschaften::Inst. Chemie::FG Theoretische Chemie - Quantenchemie
tub.publisher.universityorinstitutionTechnische Universität Berlin

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