McGough John S, Cid Jessica, Ingleson Michael J
School of Chemistry, University of Manchester, Oxford Road, Manchester, M13 9PL, UK.
Chemistry. 2017 Jun 16;23(34):8180-8184. doi: 10.1002/chem.201702060. Epub 2017 May 31.
Activation of N-heterocyclic carbene boranes (NHC⋅BH ) by I enables the metal-free catalytic C-H borylation of heteroarenes with formation of H as the by-product in a process that uses only bench stable precursors. The borylation of indoles using NHC⋅BH /I produces C2-borylated indoles exclusively in contrast to other catalytic electrophilic C-H borylation methods. Mechanistic studies indicate that this is due to C3 to C2 boron migration facilitated by the absence of exogenous Brønsted bases. Thus this C-H borylation methodology proceeds under sufficiently Brønsted acidic conditions to enable the thermodynamic C2-borylated indole isomer to be formed instead of the C3 borylated-isomer. This demonstrates that electrophilic C-H borylation can be used to access a wider range of borylated regioisomers than reported to date.
碘可激活氮杂环卡宾硼烷(NHC⋅BH ),从而实现无金属催化的杂芳烃C-H硼化反应,该过程仅使用稳定的前体,并以氢气作为副产物生成。与其他催化亲电C-H硼化方法不同,使用NHC⋅BH /碘对吲哚进行硼化反应仅生成C2-硼化吲哚。机理研究表明,这是由于不存在外源布朗斯特碱促进了从C3到C2的硼迁移。因此,这种C-H硼化方法在足够的布朗斯特酸性条件下进行,从而能够形成热力学上更稳定的C2-硼化吲哚异构体而非C3-硼化异构体。这表明,亲电C-H硼化反应可用于获得比迄今报道范围更广的硼化区域异构体。