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A palladium-catalyzed Barluenga cross-coupling - reductive cyclization sequence to substituted indoles.


ABSTRACT: A short and flexible synthesis of substituted indoles employing two palladium-catalyzed reactions, a Barluenga cross-coupling of p-tosylhydrazones with 2-nitroarylhalides followed by a palladium-catalyzed, carbon monoxide-mediated reductive cyclization has been developed. A one-pot, two-step methodology was further developed, eliminating isolation and purification of the cross-coupling product. This was accomplished by utilizing the initially added 0.025 equivalents of bis(triphenylphosphine)palladium dichloride, thus serving a dual role in the cross-coupling and the reductive cyclization. It was found that addition of 1,3-bis(diphenylphosphino)propane and carbon monoxide after completion of the Barluenga reaction afforded, in most cases, significantly better overall yields.

SUBMITTER: Rahman SMA 

PROVIDER: S-EPMC8411973 | biostudies-literature | 2021 Aug

REPOSITORIES: biostudies-literature

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A palladium-catalyzed Barluenga cross-coupling - reductive cyclization sequence to substituted indoles.

Rahman S M Ashikur SMA   Söderberg Björn C G BCG  

Tetrahedron 20210706


A short and flexible synthesis of substituted indoles employing two palladium-catalyzed reactions, a Barluenga cross-coupling of <i>p</i>-tosylhydrazones with 2-nitroarylhalides followed by a palladium-catalyzed, carbon monoxide-mediated reductive cyclization has been developed. A one-pot, two-step methodology was further developed, eliminating isolation and purification of the cross-coupling product. This was accomplished by utilizing the initially added 0.025 equivalents of bis(triphenylphosph  ...[more]

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