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通过环烷酮缩酮的位点特异性活化实现芳族羰基的烯基化反应

Olefination of Aromatic Carbonyls via Site-Specific Activation of Cycloalkanone Ketals.

作者信息

To Tuong Anh, Nguyen Thanh Vinh

机构信息

School of Chemistry, University of New South Wales, Sydney Anzac Parade, Kensington, NSW 2052, Australia.

出版信息

Angew Chem Int Ed Engl. 2024 Jan 2;63(1):e202317003. doi: 10.1002/anie.202317003. Epub 2023 Dec 1.

Abstract

Skeletal editing is an important strategy in organic synthesis as it modifies the carbon backbone to tailor molecular structures with precision, enabling access to compounds with specific desired properties. Skeletal editing empowers chemists to transform synthetic approaches of target compounds across diverse applications from drug discovery to materials science. Herein, we introduce a new skeletal editing method to convert readily available aromatic carbonyl compounds into valuable unsaturated carboxylic acids with extended carbon chains. Our reaction setup enables a cascade reaction of enolization-[2+2]cycloaddition-[2+2]cycloreversion between aromatic carbonyl compounds and ketals of cyclic ketones to generate unsaturated carboxylic acids as ring-opening products. Through a simple design, our substrates are specifically activated to react at predetermined positions to enhance selectivity and efficiency. This practical method offers convenient access to versatile organic building blocks as well as provides fresh insights into manipulating traditional reaction pathways for new synthetic applications.

摘要

骨架编辑是有机合成中的一项重要策略,因为它可以修饰碳骨架以精确地定制分子结构,从而能够获得具有特定所需性质的化合物。骨架编辑使化学家能够在从药物发现到材料科学等各种应用中改变目标化合物的合成方法。在此,我们介绍一种新的骨架编辑方法,将容易获得的芳香族羰基化合物转化为具有延长碳链的有价值的不饱和羧酸。我们的反应装置能够使芳香族羰基化合物与环酮缩酮之间发生烯醇化-[2+2]环加成-[2+2]环逆转的级联反应,以生成开环产物不饱和羧酸。通过简单的设计,我们的底物被特异性激活,在预定位置发生反应,以提高选择性和效率。这种实用方法提供了便捷途径来获得多功能有机砌块,同时也为操纵传统反应途径以用于新的合成应用提供了新的见解。

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