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四配位硼中间体实现非常规转化。

Tetracoordinate Boron Intermediates Enable Unconventional Transformations.

作者信息

Yang Kai, Song Qiuling

机构信息

Key Laboratory of Molecule Synthesis and Function Discovery, Fujian Province University, College of Chemistry at Fuzhou University, Fuzhou, Fujian 350108, China.

Institute of Next Generation Matter Transformation, College of Materials Science Engineering at Huaqiao University, 668 Jimei Boulevard, Xiamen, Fujian 361021, China.

出版信息

Acc Chem Res. 2021 May 4;54(9):2298-2312. doi: 10.1021/acs.accounts.1c00132. Epub 2021 Apr 14.

DOI:10.1021/acs.accounts.1c00132
PMID:33852276
Abstract

ConspectusOrganoboron compounds are a class of multifunctional reagents for the construction of carbon-carbon and carbon-heteroatom bonds in modern synthetic chemistry. The transformations of organoboron compounds are usually carried out through tetracoordinate boron intermediates and mainly include additions to unsaturated bonds, rearrangement reactions, transmetalation reactions, and so on. Although great progress has been achieved in improving tetracoordinate boron intermediates, there are still shortcomings, such as sparse activation modes, a paucity of reaction strategies and difficulties in stereoselective control. In this Account, we mainly discuss our recent advances in the development of unconventional transformations of organoboron compounds based on the design of tetracoordinate boron intermediates, including the following three topics: (1) the construction of C-B bonds; (2) the construction of C-C bonds; (3) the design and application of chiral tetracoordinate boron.The development of new strategies to build C-B bonds is of great interest for chemists. We have developed tandem reactions involving multiple tetracoordinate boron intermediates for the selective borylations of alkynes and the synthesis of stable tetracoordinate boron, including a domino-borylation-protodeboronation (DBP) strategy for selective borylations of alkynes, highly regio-, stereo-, and chemoselective Cu-catalyzed diborylation of β-CF-1,3-enynes and cascade B-Cl/C-B cross-metathesis and C-H bond borylation for the synthesis of tetracoordinate triarylboranes. We have also developed novel strategies involving tetracoordinate boron intermediates to form C-C bonds because the formation of C-C bonds is an enduring theme of organic chemistry. We disclosed long distance or multiple migration reactions and novel coupling partners in transmetalation reactions, such as long distance 1,4-migrations of tetracoordinate nitrile oxide boron and nitrilium boron intermediates, multiple migrations of tetracoordinate isocyanide boron intermediate, palladium-catalyzed Suzuki-Miyaura coupling of thioureas or thioamides, copper-catalyzed atroposelective Michael-type addition, and a palladium-catalyzed atroposelective Catellani reaction. Moreover, in terms of stereoselective control of the tetracoordinate boron intermediate, we found that a chiral tricoordinate boron complex could activate water to form a chiral tetracoordinate boron complex with Brønsted acidity, which has been successfully applied with high enantioselectivity to the asymmetric catalytic reduction of challenging indoles.This Account summarizes our recent efforts using unconventional transformations of organoboron compounds for the design of tetracoordinate boron intermediates, which not only achieved the precise construction of a wide range of diverse C-B bonds and C-C bonds but also developed a novel chiral Brønsted acid for the asymmetric catalytic reduction of challenging indoles.

摘要

综述

有机硼化合物是现代合成化学中用于构建碳 - 碳键和碳 - 杂原子键的一类多功能试剂。有机硼化合物的转化通常通过四配位硼中间体进行,主要包括对不饱和键的加成反应、重排反应、转金属化反应等。尽管在改进四配位硼中间体方面已经取得了很大进展,但仍存在一些缺点,如活化模式稀少、反应策略匮乏以及立体选择性控制困难等。在本综述中,我们主要讨论基于四配位硼中间体设计的有机硼化合物非常规转化的最新进展,包括以下三个主题:(1)C - B键的构建;(2)C - C键的构建;(3)手性四配位硼的设计与应用。

开发构建C - B键的新策略是化学家们非常感兴趣的。我们已经开发了涉及多个四配位硼中间体的串联反应,用于炔烃的选择性硼化以及稳定四配位硼的合成,包括用于炔烃选择性硼化的多米诺硼化 - 原硼化脱硼(DBP)策略、β - CF - 1,3 - 烯炔的高度区域、立体和化学选择性铜催化二硼化反应以及用于合成四配位三芳基硼烷的级联B - Cl/C - B交叉复分解反应和C - H键硼化反应。我们还开发了涉及四配位硼中间体形成C - C键的新策略,因为C - C键的形成是有机化学的一个持久主题。我们揭示了转金属化反应中的长距离或多重迁移反应以及新型偶联伙伴,例如四配位腈氧化物硼和腈鎓硼中间体的长距离1,4 - 迁移、四配位异腈硼中间体的多重迁移、钯催化的硫脲或硫代酰胺的铃木 - 宫浦偶联反应、铜催化的对映选择性迈克尔型加成反应以及钯催化的对映选择性卡特拉尼反应。此外,在四配位硼中间体的立体选择性控制方面,我们发现一种手性三配位硼配合物可以活化水形成具有布朗斯特酸性的手性四配位硼配合物,该配合物已成功以高对映选择性应用于具有挑战性的吲哚的不对称催化还原反应。

本综述总结了我们最近利用有机硼化合物的非常规转化来设计四配位硼中间体的工作,这不仅实现了多种不同C - B键和C - C键的精确构建,还开发了一种用于具有挑战性的吲哚不对称催化还原的新型手性布朗斯特酸。

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