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Versatile Friedel-Crafts-Type Alkylation of Benzene Derivatives Using a Molybdenum Complex/ortho-Chloranil Catalytic System

Journal

CHEMISTRY-A EUROPEAN JOURNAL
Volume 14, Issue 34, Pages 10705-10715

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.200801105

Keywords

Bronsted acid catalysts; carbenium ions; chloranil; Friedel-Crafts alkylation; molybdenum

Funding

  1. Ministry of Education, Science, Sports and Culture, Japan [20350045]
  2. Scientific Research on Priority Area Chemistry on Concerto Catalysis [20037018]
  3. Tokyo Institute of Technology

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A variety of molybdenum complexes catalyze Friedel-Crafts-type alkylation reactions of benzene derivatives with alkenes and alcohols in the presence of an organic oxidant, o-chloranil. The utilization of [Mo(CO)(6)] and two equivalents of o-chloranil catalytically furnished the hydroarylation product of norbornene with p-xylene at 80 degrees C. whereas [Cr(CO)(6)] and [W(CO)(6)] failed to catalyze the same reaction. thus indicating the importance of the molybdenum source. The best results were obtained when a molybdenum(II) complex [CpMoCl(CO)(3)] (Cp=cyclopentadienyl) was used as it precatalyst. The hydroarylation reactions also took place with styrenes, cyclohexenes, and 1-hexene as olefin substrates. The electrophilic-substitution mechanism was proposed on the basis of the ortho/para selectivities and the Markovnikov selectivities observed for the hydroarylation products. Our hypothesis was further corroborated by the fact that in the presence of the [CPMoCl(CO)(3)]/o-chloranil catalytic system, secondary, benzylic. or allylic alcohols participated in the alkylation of benzenes with similar selectivities.

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