Department of Chemical and Pharmaceutical Sciences University of Ferrara, Via Fossato di Mortara 17 44121 Ferrara Italy E-mail: V. Zanirato.
ChemistryOpen. 2020 Jan 13;9(2):100-170. doi: 10.1002/open.201900220. eCollection 2020 Feb.
The aim of this review is to highlight the rich chemistry of α-haloamides originally mainly used to discover new C-N, C-O and C-S bond forming reactions, and later widely employed in C-C cross-coupling reactions with C(sp), C(sp) and C(sp) coupling partners. Radical-mediated transformations of α-haloamides bearing a suitable located unsaturated bond has proven to be a straightforward alternative to access diverse cyclic compounds by means of either radical initiators, transition metal redox catalysis or visible light photoredox catalysis. On the other hand, cycloadditions with α-halohydroxamate-based azaoxyallyl cations have garnered significant attention. Moreover, in view of the important role in life and materials science of difluoroalkylated compounds, a wide range of catalysts has been developed for the efficient incorporation of difluoroacetamido moieties into activated as well as unactivated substrates.
本次综述旨在突出α-卤代酰胺丰富的化学性质,最初主要用于发现新的 C-N、C-O 和 C-S 键形成反应,后来广泛应用于 C-C 交叉偶联反应,与 C(sp)、C(sp)和 C(sp)偶联伙伴。带有合适位置不饱和键的α-卤代酰胺的自由基介导转化已被证明是一种通过自由基引发剂、过渡金属氧化还原催化或可见光光氧化还原催化来获得各种环状化合物的直接替代方法。另一方面,基于α-卤代羟胺基的氮杂氧杂戊二烯阳离子的环加成反应引起了广泛关注。此外,鉴于二氟烷基化化合物在生命和材料科学中的重要作用,已经开发了广泛的催化剂来有效地将二氟乙酰胺基部分引入活化和未活化的底物中。