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催化扩环二氟氟化反应:一种获取β,β-二氟碳环化合物的对映选择性平台

Catalytic Ring Expanding Difluorination: An Enantioselective Platform to Access β,β-Difluorinated Carbocycles.

作者信息

Ruyet Louise, Roblick Christoph, Häfliger Joel, Wang Zi-Xuan, Stoffels Tobias Jürgen, Daniliuc Constantin G, Gilmour Ryan

机构信息

University of Münster, Institute for Organic Chemistry, Corrensstraße 36, 48149, Münster, Germany.

出版信息

Angew Chem Int Ed Engl. 2024 May 27;63(22):e202403957. doi: 10.1002/anie.202403957. Epub 2024 Apr 9.

Abstract

Cyclic β,β-difluoro-carbonyl compounds have a venerable history as drug discovery leads, but limitations in the synthesis arsenal continue to impede chemical space exploration. This challenge is particularly acute in the arena of fluorinated medium rings where installing the difluoromethylene unit subtly alters the ring conformation by expanding the internal angle (∠C-CF-C>∠C-CH-C): this provides a handle to modulate physicochemistry (e.g. pK). To reconcile this disparity, a highly modular ring expansion has been devised that leverages simple α,β-unsaturated esters and amides, and processes them to one-carbon homologated rings with concomitant geminal difluorination (6 to 10 membered rings, up to 95 % yield). This process is a rare example of the formal difluorination of an internal alkene and is enabled by sequential I(III)-enabled O-activation. Validation of enantioselective catalysis in the generation of unprecedented medium ring scaffolds is reported (up to 93 : 7 e.r.) together with X-ray structural analyses and product derivatization.

摘要

环状β,β-二氟羰基化合物作为药物发现的先导物有着悠久的历史,但合成方法的局限性继续阻碍着化学空间的探索。这一挑战在含氟中环领域尤为严峻,在该领域中,引入二氟亚甲基单元会通过扩大内角(∠C-CF-C>∠C-CH-C)微妙地改变环的构象:这为调节物理化学性质(如pK)提供了一种手段。为了调和这种差异,人们设计了一种高度模块化的扩环方法,该方法利用简单的α,β-不饱和酯和酰胺,并将它们转化为具有偕二氟取代的单碳同系环(6至10元环,产率高达95%)。这一过程是内部烯烃进行形式上二氟取代的罕见例子,并且通过连续的I(III)介导的O-活化得以实现。本文报道了在手性催化下生成前所未有的中环骨架的对映选择性验证(对映体比例高达93:7),以及X射线结构分析和产物衍生化。

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