Issue 15, 2024

Synthesis of 4-styrylquinolines via direct oxidative C3-alkenylation of anthranils under Pd(ii) catalysis

Abstract

The palladium-catalyzed oxidative C3-alkenylation of anthranils (2,1-benzisoxazoles) with various styrenes has been successfully achieved. The C3-alkenylated anthranils were subsequently utilized in a [4+2]-cycloaddition with in situ generated α,β-unsaturated ketones leading to the synthesis of a diverse range of olefin-containing quinolines. Notably, this reaction exclusively yielded mono-alkenylated products with E-selectivity. The optimized catalytic conditions were compatible with a wide variety of substituted olefins and anthranils, forming various C3-alkenylated anthranils with good yields. To showcase the application of the present methodology, the C3-alkenylated anthranils have been employed as synthons to access a wide range of substituted quinolines.

Graphical abstract: Synthesis of 4-styrylquinolines via direct oxidative C3-alkenylation of anthranils under Pd(ii) catalysis

Supplementary files

Article information

Article type
Communication
Submitted
27 Nov 2023
Accepted
22 Jan 2024
First published
23 Jan 2024

Chem. Commun., 2024,60, 2054-2057

Synthesis of 4-styrylquinolines via direct oxidative C3-alkenylation of anthranils under Pd(II) catalysis

A. Awasthi, K. Tiwari, P. Yadav, S. Bhowmick and D. K. Tiwari, Chem. Commun., 2024, 60, 2054 DOI: 10.1039/D3CC05790A

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