Metal-free directed sp<sup>2</sup>-C-H borylation.

Lv, Jiahang; Chen, Xiangyang; Xue, Xiao-Song; Zhao, Binlin; Liang, Yong; Wang, Minyan; Jin, Liqun; Yuan, Yu et al. · Nature · 2019

basic_science · Level V

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Abstract

Organoboron reagents are important synthetic intermediates that have a key role in the construction of natural products, pharmaceuticals and organic materials<sup>1</sup>. The discovery of simpler, milder and more efficient approaches to organoborons can open additional routes to diverse substances<sup>2-5</sup>. Here we show a general method for the directed C-H borylation of arenes and heteroarenes without the use of metal catalysts. C7- and C4-borylated indoles are produced by a mild approach that is compatible with a broad range of functional groups. The mechanism, which is established by density functional theory calculations, involves BBr<sub>3</sub> acting as both a reagent and a catalyst. The potential utility of this strategy is highlighted by the downstream transformation of the formed boron species into natural products and drug scaffolds.

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