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Journal ArticleDOI

Copper-Catalyzed Aerobic Oxidative C ? H Functionalizations: Trends and Mechanistic Insights

TLDR
This work has reported several recently reported Cu-catalyzed C-H oxidation reactions that feature substrates that are electron-deficient or appear unlikely to undergo single-electron transfer to copper(II), and evidence has been obtained for the involvement of organocopper(III) intermediates in the reaction mechanism.
Abstract
The selective oxidation of C-H bonds and the use of O(2) as a stoichiometric oxidant represent two prominent challenges in organic chemistry. Copper(II) is a versatile oxidant, capable of promoting a wide range of oxidative coupling reactions initiated by single-electron transfer (SET) from electron-rich organic molecules. Many of these reactions can be rendered catalytic in Cu by employing molecular oxygen as a stoichiometric oxidant to regenerate the active copper(II) catalyst. Meanwhile, numerous other recently reported Cu-catalyzed C-H oxidation reactions feature substrates that are electron-deficient or appear unlikely to undergo single-electron transfer to copper(II). In some of these cases, evidence has been obtained for the involvement of organocopper(III) intermediates in the reaction mechanism. Organometallic C-H oxidation reactions of this type represent important new opportunities for the field of Cu-catalyzed aerobic oxidations.

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Citations
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Journal ArticleDOI

Catalytic Functionalization of C(sp2) ? H and C(sp3) ? H Bonds by Using Bidentate Directing Groups

TL;DR: It would, therefore, appear that direct functionalization of substrates by activation of C-H bonds would eliminate the multiple steps and limitations associated with the preparation of functionalized starting materials.
Journal ArticleDOI

Transition Metal-Catalyzed C–H Amination: Scope, Mechanism, and Applications

TL;DR: This Review comprehensively highlights recent advances in intra- and intermolecular C-H amination reactions utilizing late transition metal-based catalysts using mechanistic scaffolds and types of reactions.
Journal ArticleDOI

3d Transition Metals for C-H Activation.

TL;DR: A comprehensive overview on first row transition metal catalysts for C-H activation until summer 2018 is provided.
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Mild metal-catalyzed C–H activation: examples and concepts

TL;DR: This review presents the current state of the art in this field and detail C-H activation transformations reported since 2011 that proceed either at or below ambient temperature, in the absence of strongly acidic or basic additives or without strong oxidants.
References
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Journal ArticleDOI

Direct coupling of indoles with carbonyl compounds: short, enantioselective, gram-scale synthetic entry into the hapalindole and fischerindole alkaloid families.

TL;DR: Using this new method, a short, enantioselective, gram-scale and protecting group-free synthetic entry to the fischerindole and hapalindole indole alkaloid family has been achieved from carvone and indole.
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Metallkatalysierte α‐Arylierungen von Carbonylen und verwandten Molekülen: aktuelle Trends bei der C‐C‐Kupplung über C‐H‐Funktionalisierung

TL;DR: In α-Stellung arylierte Carbonyleinheiten sind in biologisch interessanten Molekulen haufig vertreten and daher von grosem Interesse fur die pharmazeutische Industrie as discussed by the authors.
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Alternative Mechanistic Explanation for Ligand-Dependent Selectivities in Copper-Catalyzed N- and O-Arylation Reactions

TL;DR: The present study shows that an alternative, oxidative addition/reductive elimination mechanism may also explain the ligand-dependent selectivities in Ullmann-type reactions of amino alcohols with iodobenzene by β-diketone- and 1,10-phenanthroline-ligated Cu(I) complexes.
Journal ArticleDOI

Nickel- and Copper-Catalyzed Direct Alkynylation of Azoles and Polyfluoroarenes with Terminal Alkynes under O2 or Atmospheric Conditions

TL;DR: The direct C-H alkynylation of azoles with terminal alkynes proceeds efficiently under a nickel/O(2) catalytic system and a copper/air catalyst enables the coupling of polyfluoroarenes with terminals alkynes.
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Chemoselective C−H Bond Activation: Ligand and Solvent Free Iron-Catalyzed Oxidative C−C Cross-Coupling of Tertiary Amines with Terminal Alkynes. Reaction Scope and Mechanism

TL;DR: FeCl(2) catalyzes the oxidative C-C cross-coupling of tertiary amines with terminal alkynes into propargylamines using (t-BuO)(2) as oxidant, which can be applied to aromatic and aliphatic amines and alkynes without solvent.
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