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Protonation-coupled redox reactions in planar antiaromatic meso-pentafluorophenyl-substituted o-phenylene-bridged annulated rosarins

Title
Protonation-coupled redox reactions in planar antiaromatic meso-pentafluorophenyl-substituted o-phenylene-bridged annulated rosarins
Authors
Ishida M.Kim S.-J.Preihs C.Ohkubo K.Lim J.M.Lee B.S.Park J.S.Lynch V.M.Roznyatovskiy V.V.Sarma T.Panda P.K.Lee C.-H.Fukuzumi S.Kim D.Sessler J.L.
Ewha Authors
Shunichi Fukuzumi
SCOPUS Author ID
Shunichi Fukuzumiscopusscopus
Issue Date
2013
Journal Title
Nature Chemistry
ISSN
1755-4330JCR Link
Citation
Nature Chemistry vol. 5, no. 1, pp. 15 - 20
Indexed
SCI; SCIE; SCOPUS WOS scopus
Document Type
Article
Abstract
Proton-coupled electron transfer (PCET) processes are among the most important phenomena that control a variety of chemical and biological transformations. Although extensively studied in a variety of natural systems and discrete metal complexes, PCET mechanisms are less well codified in the case of purely organic compounds. Here we report that a planar β,β′- phenylene-bridged hexaphyrin (1.0.1.0.1.0), a 24 π-electron antiaromatic species termed rosarin, displays unique redox reactivity on protonation. Specifically, treatment with acid (for example, HI) yields a 26 π-electron aromatic triprotonated monocationic species that is produced spontaneously via an intermediate - but stable - 25 π-electron non-aromatic triprotonated monoradical dication. This latter species is also produced on treatment of the original 24 π-electron antiaromatic starting material with HCl or HBr. The stepwise nature of the proton-coupled reduction observed in the planar rosarin stands in marked contrast to that seen for non-annulated rosarins and other ostensibly antiaromatic expanded porphyrinoids. © 2013 Macmillan Publishers Limited. All rights reserved.
DOI
10.1038/nchem.1501
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자연과학대학 > 화학·나노과학전공 > Journal papers
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