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通过选择性能量转移催化实现硼化1,3 - 二烯的区域和立体选择性异构化。

Regio- and Stereo-Selective Isomerization of Borylated 1,3-Dienes Enabled by Selective Energy Transfer Catalysis.

作者信息

Kweon Byeongseok, Blank Lukas, Soika Julia, Messara Amélia, 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):e202404233. doi: 10.1002/anie.202404233. Epub 2024 Apr 22.

Abstract

Configurationally-defined dienes are pervasive across the bioactive natural product spectrum, where they typically manifest themselves as sorbic acid-based fragments. These C motifs reflect the biosynthesis algorithms that facilitate their construction. To complement established biosynthetic paradigms, a chemical platform to facilitate the construction of stereochemically defined, functionalizable dienes by light-enabled isomerization has been devised. Enabled by selective energy transfer catalysis, a variety of substituted β-boryl sorbic acid derivatives can be isomerized in a regio- and stereo-selective manner (up to 97 : 3). Directionality is guided by a stabilizing n→p interaction in the product: this constitutes a formal anti-hydroboration of the starting alkyne. This operationally simple reaction employs low catalyst loadings (1 mol %) and is complete in 1 h. X-ray analysis supports the hypothesis that the n→p interaction leads to chromophore bifurcation: this provides a structural foundation for selective energy transfer.

摘要

构型明确的二烯广泛存在于生物活性天然产物谱中,它们通常表现为基于山梨酸的片段。这些碳基序反映了促进其构建的生物合成算法。为了补充已有的生物合成范式,人们设计了一个化学平台,通过光致异构化促进立体化学定义的、可功能化的二烯的构建。在选择性能量转移催化的作用下,多种取代的β-硼基山梨酸衍生物可以以区域和立体选择性的方式异构化(高达97:3)。方向性由产物中稳定的n→p相互作用引导:这构成了起始炔烃的形式上的反硼氢化反应。这个操作简单的反应使用低催化剂负载量(1 mol%),并在1小时内完成。X射线分析支持了n→p相互作用导致发色团分叉的假设:这为选择性能量转移提供了结构基础。

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