Chemical Science · 2024 · 21 citations · 61 references
Alkynes are a crucial class of materials with application across the wide range of chemical disciplines. The alkynylation of alkyl halides presents an ideal strategy for assembling these materials. Current methods rely on the intrinsic electrophilic nature of alkyl halides to couple with nucleophilic acetylenic systems, but these methods faces limitations in terms of applicability and generality. Herein, we introduce a different approach to alkynylation of alkyl halides that proceeds <i>via</i> radical intermediates and uses alkynyl sulfones as coupling partners. This strategy exploits the ability of amine-ligated boryl radicals to activate alkyl iodides and bromides through halogen-atom transfer (XAT). The resulting radicals then undergo a cascade of α-addition and β-fragmentation with the sulfone reagent, leading to the construction of C(sp<sup>3</sup>)-C(sp) bonds. The generality of the methodology has been demonstrated by its successful application in the alkynylation of complex and high-value molecules.
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Patricia Zhang, Chi “Chip” Le, David W. C. MacMillan · Journal of the American Chemical Society · 2016 · 664 citations · Full text
Aminoalkyl radicals as halogen-atom transfer agents for activation of alkyl and aryl halides
Timothée Constantin, Margherita Zanini, Alessio Regni et al. · Science · 2020 · 548 citations · Full text