作者:Ivor Smajlagic、Brandon White、Oyindamola Azeez、Melanie Pilkington、Travis Dudding
DOI:10.1021/acscatal.1c05296
日期:2022.1.21
Hydrogen bonding is ubiquitous throughout nature and serves as a versatile platform for accessing chemical reactivity. In leveraging this force, chemists have utilized organocatalysts to expand the spectrum of chemical reactivity enabled by hydrogen bonding and at the extreme proton transfer. Despite this broad utility, exploiting charge as a hydrogen-bond activation strategy is unknown for squaramide
氢键在自然界中无处不在,可作为获得化学反应性的多功能平台。在利用这种力量的过程中,化学家们利用有机催化剂来扩展由氢键和极端质子转移实现的化学反应范围。尽管有这种广泛的用途,但对于方酸酰胺催化剂来说,利用电荷作为氢键活化策略是未知的。考虑到这一缺陷,在此,我们公开了一种显示电荷增强酸度的阳离子方方酰胺-环丙烯有机催化剂。这一进步的关键是阳离子电荷,与超亲电特性和强 Brønsted 酸度有关,允许在其他重要的化学转化中构建前所未有的肟醚功能。