Synthesis of Benzylic Alcohols by C–H Oxidation
Синтез бензильных спиртов окислением C–H
2019-11-05
SCID: 54.1/ay454tpj
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C–H oxidationbenzylic alcoholsbis(methanesulfonyl) peroxideproton-coupled electron transfer (PCET)selective methylene C-H oxidation
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Abstract (AI)
Selective methylene C-H oxidation for the synthesis of alcohols with a broad scope and functional group tolerance is challenging due to the high proclivity for further oxidation of alcohols to ketones. Here, we report the selective synthesis of benzylic alcohols employing bis(methanesulfonyl) peroxide as an oxidant. We attempt to provide a rationale for the selectivity for monooxygenation, which is distinct from previous work; a proton-coupled electron transfer mechanism (PCET) may account for the difference in reactivity. We envision that our method will be useful for applications in the discovery of drugs and agrochemicals.
Key Findings
1
A method for selective methylene C–H oxidation to synthesize benzylic alcohols using bis(methanesulfonyl) peroxide as oxidant is reported.
2
The authors propose that a proton-coupled electron transfer (PCET) mechanism may explain the observed selectivity distinct from previous methods.
3
The method is presented as potentially useful for drug and agrochemical discovery applications.
4
The reported oxidation achieves monooxygenation of C–H to alcohols while minimizing overoxidation to ketones, demonstrating broad scope and functional group tolerance.
Research Object
Benzylic methylene C–H bonds undergoing oxidation to give benzylic alcohols using bis(methanesulfonyl) peroxide
Research Subject
Selective monooxygenation (methylene C–H oxidation) to synthesize benzylic alcohols with broad scope and functional-group tolerance and the mechanistic rationale for selectivity, potentially via a proton-coupled electron transfer (PCET) pathway
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2019-11-05
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