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DOI: 10.1126/science.aaf7783
¤ OpenAccess: Bronze
This work has “Bronze” OA status. This means it is free to read on the publisher landing page, but without any identifiable license.

Enantioselective cyanation of benzylic C–H bonds via copper-catalyzed radical relay

Wen Zhang,Fei Wang,Scott D. McCann,Dinghai Wang,Pinhong Chen,Shannon S. Stahl,Guosheng Liu

Chemistry
Enantioselective synthesis
Cyanation
2016
Direct methods for stereoselective functionalization of sp3-hybridized carbon-hydrogen [C(sp3)-H] bonds in complex organic molecules could facilitate much more efficient preparation of therapeutics and agrochemicals. Here, we report a copper-catalyzed radical relay pathway for enantioselective conversion of benzylic C-H bonds into benzylic nitriles. Hydrogen-atom abstraction affords an achiral benzylic radical that undergoes asymmetric C(sp3)-CN bond formation upon reaction with a chiral copper catalyst. The reactions proceed efficiently at room temperature with the benzylic substrate as limiting reagent, exhibit broad substrate scope with high enantioselectivity (typically 90 to 99% enantiomeric excess), and afford products that are key precursors to important bioactive molecules. Mechanistic studies provide evidence for diffusible organic radicals and highlight the difference between these reactions and C-H oxidations mediated by enzymes and other catalysts that operate via radical rebound pathways.
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    Enantioselective cyanation of benzylic C–H bonds via copper-catalyzed radical relay” is a paper by Wen Zhang Fei Wang Scott D. McCann Dinghai Wang Pinhong Chen Shannon S. Stahl Guosheng Liu published in 2016. It has an Open Access status of “bronze”. You can read and download a PDF Full Text of this paper here.