Issue 3, 2023

Gold catalysed site-selective cross-coupling of tertiary α-silylamines with 1-iodoalkynes under UVA LED light

Abstract

A synthetic method that relies on [Au2(μ-dppm)2]Cl2 (dppm = bis(diphenylphosphino)methane) and UVA LED (LED = light emitting diode) light (λ = 365 nm) to mediate the α-alkynylation of tertiary α-silylamines by 1-iodoalkynes is described. The site-selective desilylative C(sp3)–C(sp) bond formation protocol was demonstrated to exhibit excellent functional group tolerance as it was applicable to a broad range of coupling partners and a variety of bioactive molecules and natural products. Experimental and computational studies suggest the reaction mechanism follows an oxidative quench pathway that generates the two surmised radical species of the amine and alkyne substrates. It also implied the possible involvement of the dimeric metal complex in mediating the ensuing cross-coupling of the two radical species, which is unprecedented in photoredox gold(I,I) catalysis.

Graphical abstract: Gold catalysed site-selective cross-coupling of tertiary α-silylamines with 1-iodoalkynes under UVA LED light

Supplementary files

Article information

Article type
Research Article
Submitted
07 Oct 2022
Accepted
08 Dec 2022
First published
12 Dec 2022

Org. Chem. Front., 2023,10, 759-766

Gold catalysed site-selective cross-coupling of tertiary α-silylamines with 1-iodoalkynes under UVA LED light

Y. Zhao, J. T. Merrett, J. Jin, L. Yu, M. L. Coote and P. W. H. Chan, Org. Chem. Front., 2023, 10, 759 DOI: 10.1039/D2QO01581A

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