Department of Chemistry, Centennial Center for Interdisciplinary Science, University of Alberta, Edmonton, AB, T6G 2G2, Canada.
Nat Commun. 2023 May 4;14(1):2563. doi: 10.1038/s41467-023-38228-8.
Organocatalytic strategies for the direct activation of hydroxy-containing compounds have paled in comparison to those applicable to carbonyl compounds. To this end, boronic acids have emerged as valuable catalysts for the functionalization of hydroxy groups in a mild and selective fashion. Distinct modes of activation in boronic acid-catalyzed transformations are often accomplished by vastly different catalytic species, complicating the design of broadly applicable catalyst classes. Herein, we report the use of benzoxazaborine as a general scaffold for the development of structurally related yet mechanistically divergent catalysts for the direct nucleophilic and electrophilic activation of alcohols under ambient conditions. The utility of these catalysts is demonstrated in the monophosphorylation of vicinal diols and the reductive deoxygenation of benzylic alcohols and ketones respectively. Mechanistic studies of both processes reveal the contrasting nature of key tetravalent boron intermediates in the two catalytic manifolds.
相对于可应用于羰基化合物的策略,直接激活含羟基化合物的有机催化策略已经黯然失色。为此,硼酸已经成为一种温和且选择性地对羟基基团进行功能化的有价值的催化剂。硼酸催化转化中不同的激活模式通常通过完全不同的催化物种来实现,这使得广泛适用的催化剂类别的设计变得复杂。在此,我们报告了苯并噁唑硼烷作为一种通用支架的使用,用于开发结构相关但具有不同机制的催化剂,以在环境条件下直接亲核和亲电激活醇。这些催化剂在邻二醇的单磷酸化以及苄醇和酮的还原脱氧作用中的应用分别得到了证明。对这两个过程的机理研究揭示了两种催化途径中关键四价硼中间体的对比性质。