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Published on: June 21, 2017
Gold-catalyzed oxidative coupling reactions with aryltrimethylsilanes
William E Brenzovich1, Jean-François Brazeau, F Dean Toste
1Department of Chemistry, University of California, Berkeley, California 94720, United States.
Arylsilanes are effective in gold-catalyzed oxidative oxyarylation reactions, supporting an intramolecular electrophilic aromatic substitution mechanism. This method offers an alternative to boronic acids, reducing byproducts and enabling efficient intramolecular coupling.
Area of Science:
- Organic Chemistry
- Organometallic Chemistry
Background:
- Continuing studies explored a novel oxidative gold oxyarylation reaction.
- Previous methods utilized boronic acids as coupling partners.
Purpose of the Study:
- To investigate the utility of arylsilanes as coupling partners in gold-catalyzed oxidative oxyarylation.
- To provide further evidence for the proposed intramolecular electrophilic aromatic substitution mechanism.
Main Methods:
- Oxidative gold oxyarylation reaction employing arylsilanes.
- Comparison with existing boronic acid-based methods.
Main Results:
- Arylsilanes were identified as competent coupling partners, yielding results complementary to boronic acid methods.
- The use of trimethylsilanes significantly reduced homocoupling byproducts.
- Facile intramolecular coupling reactions were achieved.
Conclusions:
- Arylsilanes are viable and advantageous coupling partners in this oxidative gold oxyarylation reaction.
- The findings reinforce the proposed intramolecular electrophilic aromatic substitution mechanism.
- This approach offers improved efficiency and reduced byproducts compared to previous methods.
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