Kadarauch Max, Whalley David M, Phipps Robert J
Yusuf Hamied Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge, CB2 1EW, United Kingdom.
J Am Chem Soc. 2023 Nov 29;145(47):25553-25558. doi: 10.1021/jacs.3c10663. Epub 2023 Nov 16.
Arylative phenol dearomatization affords complex, cyclohexanone-based scaffolds from simple starting materials, and asymmetric versions allow access to valuable enantioenriched structures. However, bespoke chiral ligands must typically be identified for each new scaffold variation. We have addressed this limitation by applying the concept of electrostatically-directed palladium catalysis whereby the chiral sulfonated ligand sSPhos engages in electrostatic interactions with a phenolate substrate via its associated alkali metal cation. This approach allows access to highly enantioenriched spirocyclohexadienones, a process originally reported by Buchwald and co-workers in a predominantly racemic manner. In addition, sSPhos is proficient at forming two other distinct scaffolds, which had previously required fundamentally different chiral ligands, as well as a novel oxygen-linked scaffold. We envisage that the broad generality displayed by sSPhos will facilitate the expansion of this important reaction type and highlight the potential of this unusual design principle, which harnesses attractive electrostatic interactions.
芳基化苯酚去芳构化反应能从简单的起始原料得到复杂的、基于环己酮的骨架结构,不对称反应则可以获得有价值的对映体富集结构。然而,通常必须为每种新的骨架变体确定定制的手性配体。我们通过应用静电导向钯催化的概念解决了这一限制,即手性磺化配体sSPhos通过其相关的碱金属阳离子与酚盐底物发生静电相互作用。这种方法可以得到高度对映体富集的螺环己二烯酮,这一过程最初由布赫瓦尔德及其同事以主要外消旋的方式报道。此外,sSPhos擅长形成另外两种不同的骨架结构,这两种结构以前需要根本不同的手性配体,以及一种新型的氧连接骨架。我们设想,sSPhos所展现的广泛通用性将促进这一重要反应类型的扩展,并突出这种利用有吸引力的静电相互作用的独特设计原则的潜力。