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酰胺作为亲电硼氢化反应中可修饰的导向基团。

Amides as modifiable directing groups in electrophilic borylation.

作者信息

Iqbal Saqib A, Uzelac Marina, Nawaz Ismat, Wang Zhongxing, Jones T Harri, Yuan Kang, Millet Clement R P, Nichol Gary S, Chotana Ghayoor Abbas, Ingleson Michael J

机构信息

EaStCHEM School of Chemistry, The University of Edinburgh David Brewster Road Edinburgh EH9 3FJ UK

Department of Chemistry and Chemical Engineering, Lahore University of Management Sciences Lahore 54792 Pakistan.

出版信息

Chem Sci. 2023 Mar 15;14(14):3865-3872. doi: 10.1039/d2sc06483a. eCollection 2023 Apr 5.

Abstract

Amide directed C-H borylation using ≥two equiv. of BBr forms borenium cations containing a RN(R')C[double bond, length as m-dash]O→B(Ar)Br unit which has significant Lewis acidity at the carbonyl carbon. This enables reduction of the amide unit to an amine using hydrosilanes. This approach can be applied sequentially in a one-pot electrophilic borylation-reduction process, which for phenyl-acetylamides generates borylated compounds that can be directly oxidised to the 2-(2-aminoethyl)-phenol. Other substrates amenable to the C-H borylation-reduction sequence include mono and diamino-arenes and carbazoles. This represents a simple method to make borylated molecules that would be convoluted to access otherwise (-octyl-1-BPin-carbazole). Substituent variation is tolerated at boron as well as in the amide unit, with diarylborenium cations also amenable to reduction. This enables a double C-H borylation-reduction-hydrolysis sequence to access B,N-polycyclic aromatic hydrocarbons (PAHs), including an example where both the boron and nitrogen centres contain functionalisable handles (N-H and B-OH). This method is therefore a useful addition to the metal-free borylation toolbox for accessing useful intermediates (ArylBPin) and novel B,N-PAHs.

摘要

使用≥两当量的BBr进行酰胺导向的C-H硼化反应,形成含有RN(R')C=O→B(Ar)Br单元的硼正离子,该单元在羰基碳处具有显著的路易斯酸性。这使得能够使用硅烷将酰胺单元还原为胺。这种方法可以在一锅法亲电硼化-还原过程中依次应用,对于苯基乙酰酰胺,该过程生成的硼化化合物可直接氧化为2-(2-氨基乙基)-苯酚。适用于C-H硼化-还原序列的其他底物包括单氨基和二氨基芳烃以及咔唑。这代表了一种制备硼化分子的简单方法,否则获取这些分子会很复杂(-辛基-1-BPin-咔唑)。硼以及酰胺单元中的取代基变化都可以耐受,二芳基硼正离子也易于还原。这使得能够通过双C-H硼化-还原-水解序列获得B,N-多环芳烃(PAHs),包括一个硼和氮中心都含有可官能化基团(N-H和B-OH)的例子。因此,该方法是无金属硼化工具箱中用于获取有用中间体(芳基BPin)和新型B,N-PAHs的有用补充。

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