Deutsch
 
Hilfe Datenschutzhinweis Impressum
  DetailsucheBrowse

Datensatz

DATENSATZ AKTIONENEXPORT

Freigegeben

Zeitschriftenartikel

Bowl shaped deformation in a planar aromatic polycycle upon reduction. Li and Na separated dianions of the aromatic polycycle 5,6:11,12-di-o-phenylene-tetracene

MPG-Autoren
/persons/resource/persons58578

Goddard,  Richard
Service Department Lehmann (EMR), Max-Planck-Institut für Kohlenforschung, Max Planck Society;

/persons/resource/persons58744

Lehmann,  Christian W.
Service Department Lehmann (EMR), Max-Planck-Institut für Kohlenforschung, Max Planck Society;

Externe Ressourcen
Es sind keine externen Ressourcen hinterlegt
Volltexte (beschränkter Zugriff)
Für Ihren IP-Bereich sind aktuell keine Volltexte freigegeben.
Volltexte (frei zugänglich)
Es sind keine frei zugänglichen Volltexte in PuRe verfügbar
Ergänzendes Material (frei zugänglich)
Es sind keine frei zugänglichen Ergänzenden Materialien verfügbar
Zitation

Wombacher, T., Goddard, R., Lehmann, C. W., & Schneider, J. J. (2017). Bowl shaped deformation in a planar aromatic polycycle upon reduction. Li and Na separated dianions of the aromatic polycycle 5,6:11,12-di-o-phenylene-tetracene. Dalton Transactions, 46(41), 14122-14129. doi:10.1039/c7dt03039h.


Zitierlink: https://hdl.handle.net/11858/00-001M-0000-002E-3185-3
Zusammenfassung
Herein we report the synthesis and crystal structures of three light alkali metal salts of the dianion of the polycyclic aromatic hydrocarbon 5,6:11,12-di-o-phenylenetetracene (LDOPT). The compounds are obtained by reaction of LDOPT with an excess of lithium or sodium metal in different O-donor solvents (DME, diglyme) and crystallize as naked, solvated-cation separated dianions exhibiting no interaction between the alkali metal ion and the aromatic pi-system of LDOPT. Depending on the aprotic etheral solvent and the hardness of the alkaline metal agent a significant structural perturbation of the conjugated carbon framework of LDOPT is observed resulting in a bowl shaped curvature of the anionic pi-perimeter, in contrast to its fully planar neutral state. Reduction of LDOPT with lithium in DME results in the formation of the solvent-separated molecular structure of {[(DME-κ2O)3Li+]2(LDOPT2−)}2 1 containing naked isolated units of dianionic LDOPT. A similar structural arrangement is observed for the corresponding sodium compound {[(DME-κ2O)3Na+]2(LDOPT2−)}2 2 in which, however, a lesser curvature of the isolated dianionic ligand skeleton compared to 1 is observed. In contrast to 1 and 2 reduction with sodium in diglyme results in the formation of {[(diglyme-κ3O)2Na+]2(LDOPT2−)}0.5 3. The deformation of the peripheric phenylene rings of [LDOPT2−] in 3 is not as pronounced as compared to 1 and 2. Nevertheless, molecular structures of 1–3 deviate from full-planarity as observed in the parent neutral LDOPT. No preferential endo- or exo-site coordination of the alkaline metal cations Li+ and Na+ on the curved dianionic pi-perimeter is observed.