Dpto. Química Inorgánica, Universidad de Murcia, Campus de Espinardo, Murcia, 30100, Spain.
Chem Soc Rev. 2016 Dec 21;45(24):6766-6798. doi: 10.1039/c6cs00220j. Epub 2016 Oct 18.
The synthesis of biaryls from benzyne intermediates offers an alternative strategy to conventional metal-catalyzed cross-coupling approaches. The concept is as old as benzyne itself, being the basis of Wittig's seminal observations on biphenyl synthesis from phenyl lithium and fluorobenzene in 1940. In the intervening 75 years, the transformation has grown to encompass a remarkable scope of reaction classes, and continues to develop as new benzyne precursors enable inventive biaryl syntheses under mild conditions. This review will cover all aryne methods relevant to biaryl synthesis, drawing together key ideas from the older literature involving halobenzene precursors, with a more comprehensive coverage of modern methods using 2-(trimethylsilyl)phenyl triflates and tri-ynes as the source of benzyne. Collectively, we hope to highlight the power of aryne chemistry to access a huge range of biaryl structures from a versatile and highly customizable set of substrates.
从苯炔中间体合成联芳烃提供了一种替代传统金属催化交叉偶联方法的策略。这个概念与苯炔本身一样古老,是 Wittig 于 1940 年从苯基锂和氟苯出发合成联苯的开创性观察的基础。在这 75 年中,该转化已发展到包含广泛的反应类别,并随着新的苯炔前体的出现,在温和条件下进行创新的联芳烃合成而不断发展。这篇综述将涵盖所有与联芳烃合成相关的芳炔方法,从涉及卤代苯前体的旧文献中提取关键思想,并更全面地介绍使用 2-(三甲基甲硅烷基)苯基三氟甲磺酸酯和三炔作为苯炔来源的现代方法。总的来说,我们希望强调芳炔化学的强大功能,从一组多功能且高度可定制的底物中获得广泛的联芳烃结构。