| Literature DB >> 30996904 |
Johnny W Lee1, Weijia Zheng1, Cristian A Morales-Rivera2, Peng Liu2, Ming-Yu Ngai1.
Abstract
Intermolecular C-H difluoromethoxylation of (hetero)arenes remains a long-standing and unsolved problem in organic synthesis. Herein, we report the first catalytic protocol employing a redox-active difluoromethoxylating reagent 1a and photoredox catalysts for the direct C-H difluoromethoxylation of (hetero)arenes. Our approach is operationally simple, proceeds at room temperature, and uses bench-stable reagents. Its synthetic utility is highlighted by mild reaction conditions that tolerate a wide variety of functional groups and biorelevant molecules. Experimental and computational studies suggest single electron transfer (SET) from excited photoredox catalysts to 1a forming a neutral radical intermediate that liberates the OCF2H radical exclusively. Addition of this radical to (hetero)arenes gives difluoromethoxylated cyclohexadienyl radicals that are oxidized and deprotonated to afford the products of difluoromethoxylation.Entities:
Year: 2019 PMID: 30996904 PMCID: PMC6429774 DOI: 10.1039/c8sc05390a
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Scheme 1Applications and strategies for the synthesis of difluoromethoxylated (hetero)arenes.
Difluoromethoxylating reagent and reaction optimization
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Reactions were performed using 1 equivalent of reagent and 10 equivalents of benzene.
Yields were determined by 19F NMR spectroscopy using trifluorotoluene as an internal standard.
1 equivalent of benzene.
Without Ru(bpy)3(PF6)2.
Without light.
The reaction was set-up under air atomsphere.
Selected examples of difluoromethoxylation of (hetero)arenes
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Reactions were performed using 1.0 equivalent of reagent 1a and 10.0 equivalents of (hetero)arene. The asterisk (*) and number sign (#) denote functionalization of minor regioisomeric products. Overall yields and the ratio of the constitutional isomers were determined by 19F NMR spectroscopy using trifluorotoluene as an internal standard.
Reaction performed with MeCN and CH2Cl2 (1 : 1, 0.2 M).
Reaction performed with 10.0 equiv. of TfOH. See ESI for experimental details.
Selected examples of difluoromethoxylation of biorelevant molecules
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Yields were determined based on the recovered starting material. The yield in parentheses is the isolated yield. The asterisk (*) denotes functionalization of a minor regioisomeric product.
Reaction performed with 1.00 equivalent of TfOH.
1.00 equivalent of K2CO3. See ESI for experimental details.
Scheme 2Experimental mechanism studies: areactions were performed using 5.00 equivalents of arenes each. See ESI† for experimental details.
Scheme 3Computational studies and proposed reaction mechanism. aDFT calculations were performed at the M06-2X/6-311++G(d,p)/SMD(MeCN)//M06-2X/6-31+G(d) level of theory using reagent 1a and benzene as a substrate. All energies are in kcal mol–1 and are with respect to II and 1a. See (ESI†) for details.