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Aryl-Aryl and Aryl-Alkyl Coupling via N-Heterocycle C-H Activation

D. Shabashov, O. Daugulis

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Abstract

Significance The use of heterocyclic N-functionality for anchoring a Pd-catalyst to effect C-H activation at remote but geometrically distinct sites is reported. Thus coupling of alkyl- or aryl-substituted pyridines, methyl-substituted quinolines and condensed systems, as well as pyrazoles with aryl iodines under Pd catalysis in the presence of a Ag(I) source affords arylated products in reasonable yields with modest scope in functionality in the aryl iodine partner. Noteworthy iodo over bromo, i.e. FG = Br, coupling selectivity is observed.

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Significance The use of heterocyclic N-functionality for anchoring a Pd-catalyst to effect C-H activation at remote but geometrically distinct sites is reported. Thus coupling of alkyl- or aryl-substituted pyridines, methyl-substituted quinolines and condensed systems, as well as pyrazoles with aryl iodines under Pd catalysis in the presence of a Ag(I) source affords arylated products in reasonable yields with modest scope in functionality in the aryl iodine partner. Noteworthy iodo over bromo, i.e. FG = Br, coupling selectivity is observed.

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Available abstract

Significance The use of heterocyclic N-functionality for anchoring a Pd-catalyst to effect C-H activation at remote but geometrically distinct sites is reported. Thus coupling of alkyl- or aryl-substituted pyridines, methyl-substituted quinolines and condensed systems, as well as pyrazoles with aryl iodines under Pd catalysis in the presence of a Ag(I) source affords arylated products in reasonable yields with modest scope in functionality in the aryl iodine partner. Noteworthy iodo over bromo, i.e. FG = Br, coupling selectivity is observed.

Key concepts: Aryl, Chemistry, Alkyl, Coupling (piping), Medicinal chemistry, Organic chemistry, Mechanical engineering, Engineering

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