Department of Pharmaceutical Technology (Process Chemistry), National Institute of Pharmaceutical Education and Research, S. A. S. Nagar, Punjab 160062, India.
Department für Chemie, Universität zu Köln, Greinstraße 4, 50939 Köln, Germany.
J Org Chem. 2022 May 20;87(10):6638-6656. doi: 10.1021/acs.joc.2c00295. Epub 2022 Apr 28.
A simple approach for the intramolecular aroylation of electron-rich arenes under mild conditions has been developed. A pH-controlled polarity umpolung strategy can be used to synthesize different fluorenones, which are important building blocks for biological applications. Unlike previous acylation reactions involving nucleophilic aroyl radicals, this approach likely relies on in situ generated electrophilic aroyl radicals. Detailed mechanistic and computational investigations provide detailed insights into the reaction mechanism and support the hypothesis of a pH-mediated umpolung.
已开发出一种在温和条件下实现富电子芳环分子内芳酰化的简单方法。可以使用 pH 控制的极性反转策略来合成不同的芴酮,芴酮是生物应用的重要构建块。与涉及亲核芳基自由基的先前酰化反应不同,这种方法可能依赖于原位生成的亲电芳基自由基。详细的机理和计算研究提供了对反应机理的深入了解,并支持 pH 介导的反转假设。