GSK Carbon Neutral Laboratories for Sustainable Chemistry, University of Nottingham, Nottingham, UK.
School of Chemistry, University of Nottingham, University Park, Nottingham, UK.
Nat Chem. 2020 Mar;12(3):260-269. doi: 10.1038/s41557-020-0425-4. Epub 2020 Feb 27.
Given the important role played by 2-hydroxybiaryls in organic, medicinal and materials chemistry, concise methods for the synthesis of this common motif are extremely valuable. In seeking to extend the lexicon of synthetic chemists in this regard, we have developed an expedient and general strategy for the ortho-arylation of phenols and naphthols using readily available boronic acids. Our methodology relies on in situ generation of a uniquely reactive Bi(V) arylating agent from a bench-stable Bi(III) precursor via telescoped B-to-Bi transmetallation and oxidation. By exploiting reactivity that is orthogonal to conventional metal-catalysed manifolds, diverse aryl and heteroaryl partners can be rapidly coupled to phenols and naphthols under mild conditions. Following arylation, high-yielding recovery of the Bi(III) precursor allows for its efficient re-use in subsequent reactions. Mechanistic interrogation of each key step of the methodology informs its practical application and provides fundamental insight into the underexploited reactivity of organobismuth compounds.
鉴于 2-羟基联苯在有机、医药和材料化学中扮演的重要角色,简洁的合成该常见结构的方法极具价值。为了在这方面拓展合成化学家的词汇量,我们开发了一种简便通用的酚类和萘酚邻位芳基化方法,使用易得的硼酸作为起始原料。我们的方法依赖于通过缩合 B 到 Bi 的转金属化和氧化作用,从稳定的 Bi(III)前体原位生成独特的活性 Bi(V)芳基化试剂。通过利用与传统金属催化途径正交的反应性,可以在温和条件下快速将各种芳基和杂芳基偶联到酚类和萘酚类化合物上。芳基化后,高效回收 Bi(III)前体,使其能够在后续反应中有效重复使用。对该方法每个关键步骤的机理研究为其实践应用提供了信息,并深入了解了有机铋化合物未充分利用的反应性。