Can Baird's and Clar's Rules Combined Explain Triplet State Energies of Polycyclic Conjugated Hydrocarbons with Fused 4nπ- and (4n+2)π-Rings?
dc.contributor.author
dc.date.accessioned
2020-11-30T16:06:17Z
dc.date.available
2020-11-30T16:06:17Z
dc.date.issued
2017-05-23
dc.identifier.issn
0022-3263
dc.identifier.uri
dc.description.abstract
Compounds that can be labeled as “aromatic chameleons” are π-conjugated compounds that are able to adjust their π-electron distributions so as to comply with the different rules of aromaticity in different electronic states. We used quantum chemical calculations to explore how the fusion of benzene rings onto aromatic chameleonic units represented by biphenylene, dibenzocyclooctatetraene, and dibenzo[a,e]pentalene modifies the first triplet excited states (T1) of the compounds. Decreases in T1 energies are observed when going from isomers with linear connectivity of the fused benzene rings to those with cis- or trans-bent connectivities. The T1 energies decreased down to those of the parent (isolated) 4nπ-electron units. Simultaneously, we observe an increased influence of triplet state aromaticity of the central 4n ring as given by Baird’s rule and evidenced by geometric, magnetic, and electron density based aromaticity indices (HOMA, NICS-XY, ACID, and FLU). Because of an influence of triplet state aromaticity in the central 4nπ-electron units, the most stabilized compounds retain the triplet excitation in Baird π-quartets or octets, enabling the outer benzene rings to adapt closed-shell singlet Clar π-sextet character. Interestingly, the T1 energies go down as the total number of aromatic cycles within a molecule in the T1 state increases
dc.description.sponsorship
The Erasmus Mundus EXPERTS III is acknowledged for a PhD
scholarship to RA and the Swedish Research Council (Vetenskapsrådet) are acknowledged for
financial support. The Swedish infrastructure for computing (SNIC) at NSC and UPPMAX
(SNIC-2016-1-74 and SNIC-2016/7-21) are greatly acknowledged for the generous allotment
of computer time. M.S. and O.E.B. acknowledges the Ministerio de Economía y
Competitividad (MINECO) of Spain (Project CTQ2014-54306-P), the Generalitat de
Catalunya (project 2014SGR931, Xarxa de Referència en Química Teòrica i Computacional, ICREA Academia 2014 prize for M.S., and grant No. 2014FI_B 00429 to O.E.B.), and the EU
under the FEDER grant UNGI10-4E-801 (European Fund for Regional Development)
dc.format.extent
14 p.
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application/pdf
dc.language.iso
eng
dc.publisher
American Chemical Society (ACS)
dc.relation
info:eu-repo/grantAgreement/MINECO//CTQ2014-54306-P/ES/ESTUDIOS TEORICO-EXPERIMENTALES DE CICLACIONES CATALIZADAS POR METALES DE TRANSICION. NUEVOS DESARROLLOS EN AROMATICIDAD, FUNCIONALES DE LA DENSIDAD Y QUIMICA SUPRAMOLECULAR/
dc.relation.isformatof
Versió postprint del document publicat a: https://doi.org/10.1021/acs.joc.7b00906
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© Journal of Organic Chemistry, 2017, vol. 82, núm. 12, p. 6327-6340
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Articles publicats (D-Q)
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Tots els drets reservats
dc.source
Ayub, Rabia El Bakouri, Ouissam Jorner, Kjell Solà i Puig, Miquel Ottosson, Henrik 2017 Can Baird's and Clar's Rules Combined Explain Triplet State Energies of Polycyclic Conjugated Hydrocarbons with Fused 4nπ- and (4n+2)π-Rings? Journal of Organic Chemistry 82 12 6327 6340
dc.subject
dc.title
Can Baird's and Clar's Rules Combined Explain Triplet State Energies of Polycyclic Conjugated Hydrocarbons with Fused 4nπ- and (4n+2)π-Rings?
dc.type
info:eu-repo/semantics/article
dc.rights.accessRights
info:eu-repo/semantics/openAccess
dc.type.version
info:eu-repo/semantics/acceptedVersion
dc.identifier.doi
dc.identifier.idgrec
027524
dc.contributor.funder
dc.type.peerreviewed
peer-reviewed
dc.relation.ProjectAcronym
dc.identifier.eissn
1520-6904