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      Site-selective and versatile aromatic C−H functionalization by thianthrenation

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          Most cited references28

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          Visible light photoredox catalysis with transition metal complexes: applications in organic synthesis.

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            Palladium-Catalyzed Carbonylation Reactions of Aryl Halides and Related Compounds

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              Activation of remote meta-C-H bonds assisted by an end-on template.

              Functionalization of unactivated carbon-hydrogen (C-H) single bonds is an efficient strategy for rapid generation of complex molecules from simpler ones. However, it is difficult to achieve selectivity when multiple inequivalent C-H bonds are present in the target molecule. The usual approach is to use σ-chelating directing groups, which lead to ortho-selectivity through the formation of a conformationally rigid six- or seven-membered cyclic pre-transition state. Despite the broad utility of this approach, proximity-driven reactivity prevents the activation of remote C-H bonds. Here we report a class of easily removable nitrile-containing templates that direct the activation of distal meta-C-H bonds (more than ten bonds away) of a tethered arene. We attribute this new mode of C-H activation to a weak 'end-on' interaction between the linear nitrile group and the metal centre. The 'end-on' coordination geometry relieves the strain of the cyclophane-like pre-transition state of the meta-C-H activation event. In addition, this template overrides the intrinsic electronic and steric biases as well as ortho-directing effects with two broadly useful classes of arene substrates (toluene derivatives and hydrocinnamic acids).

                Author and article information

                Journal
                Nature
                Nature
                Springer Nature
                0028-0836
                1476-4687
                March 2019
                March 13 2019
                March 2019
                : 567
                : 7747
                : 223-228
                Article
                10.1038/s41586-019-0982-0
                30867606
                f4b4b1d0-28db-4eab-ab38-6be129621d66
                © 2019

                http://www.springer.com/tdm

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