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High Site Selectivity in Electrophilic Aromatic Substitutions: Mechanism of C-H Thianthrenation.

Authors :
Juliá, Fabio
Juliá, Fabio
Shao, Qianzhen
Duan, Meng
Plutschack, Matthew B
Berger, Florian
Mateos, Javier
Lu, Chenxi
Xue, Xiao-Song
Houk, KN
Ritter, Tobias
Juliá, Fabio
Juliá, Fabio
Shao, Qianzhen
Duan, Meng
Plutschack, Matthew B
Berger, Florian
Mateos, Javier
Lu, Chenxi
Xue, Xiao-Song
Houk, KN
Ritter, Tobias
Source :
Journal of the American Chemical Society; vol 143, iss 39, 16041-16054; 0002-7863
Publication Year :
2021

Abstract

The introduction of thianthrene as a linchpin has proven to be a versatile strategy for the C-H functionalization of aromatic compounds, featuring a broad scope and fast diversification. The synthesis of aryl thianthrenium salts has displayed an unusually high para regioselectivity, notably superior to those observed in halogenation or borylation reactions for various substrates. We report an experimental and computational study on the mechanism of aromatic C-H thianthrenation reactions, with an emphasis on the elucidation of the reactive species and the nature of the exquisite site selectivity. Mechanisms involving a direct attack of arene to the isolated O-trifluoracetylthianthrene S-oxide (TT+-TFA) or to the thianthrene dication (TT2+) via electron transfer under acidic conditions are identified. A reversible interconversion of the different Wheland-type intermediates before a subsequent, irreversible deprotonation is proposed to be responsible for the exceptional para selectivity of the reaction.

Details

Database :
OAIster
Journal :
Journal of the American Chemical Society; vol 143, iss 39, 16041-16054; 0002-7863
Notes :
application/pdf, Journal of the American Chemical Society vol 143, iss 39, 16041-16054 0002-7863
Publication Type :
Electronic Resource
Accession number :
edsoai.on1287298710
Document Type :
Electronic Resource