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可见光驱动的偶联烯烃化反应。

Visible light-driven conjunctive olefination.

机构信息

GSK Carbon Neutral Laboratories for Sustainable Chemistry, University of Nottingham, Nottingham, UK.

School of Chemistry, University of Nottingham, Nottingham, UK.

出版信息

Nat Chem. 2022 Jan;14(1):66-70. doi: 10.1038/s41557-021-00807-x. Epub 2021 Nov 4.

Abstract

Carboxylic acids and aldehydes are ubiquitous in chemistry and are native functionalities in many bioactive molecules and natural products. As such, a general cross-coupling process that involves these partners would open new avenues to achieve molecular diversity. Here we report a visible-light-mediated and transition metal-free conjunctive olefination that uses an alkene 'linchpin' with a defined geometry to cross-couple complex molecular scaffolds that contain carboxylic acids and aldehydes. The chemistry merges two cornerstones of organic synthesis-namely, the Wittig reaction and photoredox catalysis-in a catalytic cycle that couples a radical addition process with the redox generation of a phosphonium ylide. The methodology allows the rapid structural diversification of bioactive molecules and natural products in a native form, with a high functional group tolerance, and also forges a new alkene functional group with a programmable E-Z stereochemistry.

摘要

羧酸和醛在化学中无处不在,是许多生物活性分子和天然产物中的固有官能团。因此,涉及这些基团的通用交叉偶联过程将为实现分子多样性开辟新途径。在这里,我们报告了一种可见光介导的、无过渡金属的共轭烯烃化反应,该反应使用具有确定几何形状的烯烃“销钉”来交叉偶联含有羧酸和醛的复杂分子支架。该化学将有机合成的两个基石——即Wittig 反应和光氧化还原催化——融合在一个催化循环中,该循环将自由基加成过程与膦叶立德的氧化还原生成相结合。该方法允许以天然形式快速对生物活性分子和天然产物进行结构多样化,具有高官能团容忍度,并为具有可编程 E-Z 立体化学的新烯烃官能团开辟了道路。

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