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Journal ArticleDOI

Highly efficient and mild copper-catalyzed N- and C-arylations with aryl bromides and iodides.

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TLDR
The new method reported here is the most successful to date with regard to Ullmann-type arylation of some of these nucleophiles, providing the arylated products under particularly mild conditions.
Abstract
Mild, efficient, copper-catalyzed N-arylation procedures for nitrogen heterocycles, amides, carbamates, and C-arylation procedures for malonic acid derivatives have been developed that afford high yields of arylated products with excellent selectivity. The N-arylation of imidazole with aryl bromides or iodides was found to be greatly accelerated by inexpensive, air-stable catalyst systems, combining catalytic copper salts or oxides with a set of structurally simple chelating ligands. The reaction was shown to be compatible with a broad range of aryl halides, encompassing sterically hindered, electron-poor, and electron-rich ones, providing the arylated products under particularly mild conditions (50-82 degrees C). The lower limit in ligand and catalyst loading and the scope of Ullmann-type condensations catalyzed by complexes bearing those ligands with respect to the nucleophile class have also been investigated. Chelating Schiff base Chxn-Py-Al (1c) generates a remarkably general copper catalyst for N-arylation of pyrrole, indole, 1,2,4-triazole, amides, and carbamates; and C-arylation of diethyl malonate, ethyl cyanoacetate, and malononitrile with aryl iodides under mild conditions (50-82 degrees C). The new method reported here is the most successful to date with regard to Ullmann-type arylation of some of these nucleophiles.

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Citations
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Journal ArticleDOI

Copper-mediated coupling reactions and their applications in natural products and designed biomolecules synthesis.

TL;DR: Using R-Hydroxy Stannanes as a Model for a Methylenation Reaction and Conclusions and Future Prospects are presented.
Journal ArticleDOI

Catalytic C-C, C-N, and C-O Ullmann-type coupling reactions.

TL;DR: An increasing number of publications have appeared concerning Ullmann-type intermolecular reactions for the coupling of aryl and vinyl halides with N, O, and C nucleophiles, and this Minireview highlights recent and major developments in this topic since 2004.
Journal ArticleDOI

Catalytic Functionalization of Indoles in a New Dimension

TL;DR: This Review emphasizes the achievements in the selective catalytic functionalization of indoles (C-C bond-forming processes) over the last four years.
References
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Journal ArticleDOI

Equilibrium Acidities in Dimethyl Sulfoxide Solution

TL;DR: The first acidity scale to be established in a pure solvent other than water was the result of the pioneering work of Conant, Wheland, and McEwen in ether or ben~ene.
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Modern Synthetic Methods for Copper‐Mediated C(aryl) ? O, C(aryl) ? N, and C(aryl) ? S Bond Formation

TL;DR: In this article, the authors highlight the recent developments in the copper-mediated (both stoichiometric and catalytic) reactions of aryl boronic acids as reaction partners in both O- and N-arylation.
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Transition Metal Catalyzed Synthesis of Arylamines and Aryl Ethers from Aryl Halides and Triflates: Scope and Mechanism.

TL;DR: Oxidative addition and reductive elimination are the central steps in new palladium-catalyzed chemistry that forms C-N and C-O bonds in arylamines and ethers.
Journal ArticleDOI

Tetrahedron report number 163

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