| Literature DB >> 27709735 |
Marcin A Majewski1, Yongseok Hong2, Tadeusz Lis1, Janusz Gregoliński1, Piotr J Chmielewski1, Joanna Cybińska1, Dongho Kim3, Marcin Stępień4.
Abstract
Octulene, the higher homologue of kekulene and septulene, was synthesized using the fold-in method. This new hydrocarbon macrocycle contains a large 24-membered inner circuit, which is peripherally fused to 24 benzene rings. Such an arrangement produces considerable hyperbolic distortion of the π-conjugated surface. The consequences of distortion in octulene were explored using photophysical methods, which revealed a reduced electronic band gap and greater flexibility of the π system. Octulene contains a functional cavity with a diameter larger than 5.5 Å that is capable of efficiently binding the chloride anion in a nonpolar solvent (Ka = 2.2(4)×104 m-1 , 1 % dichloromethane (DCM) in benzene). The octulene-chloride interaction is stabilized by eight weak C(sp2 )H⋅⋅⋅Cl bonds, providing the first example of a hydrocarbon-based anion receptor.Entities:
Keywords: anion binding; aromaticity; hydrocarbons; organic synthesis; photophysics
Year: 2016 PMID: 27709735 DOI: 10.1002/anie.201608384
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336