Department of Chemistry, Gauahti University , Guwahati-781014, Assam, India.
Chem Rev. 2016 Jun 22;116(12):6837-7042. doi: 10.1021/acs.chemrev.5b00400. Epub 2016 May 20.
Bromination is one of the most important transformations in organic synthesis and can be carried out using bromine and many other bromo compounds. Use of molecular bromine in organic synthesis is well-known. However, due to the hazardous nature of bromine, enormous growth has been witnessed in the past several decades for the development of solid bromine carriers. This review outlines the use of bromine and different bromo-organic compounds in organic synthesis. The applications of bromine, a total of 107 bromo-organic compounds, 11 other brominating agents, and a few natural bromine sources were incorporated. The scope of these reagents for various organic transformations such as bromination, cohalogenation, oxidation, cyclization, ring-opening reactions, substitution, rearrangement, hydrolysis, catalysis, etc. has been described briefly to highlight important aspects of the bromo-organic compounds in organic synthesis.
溴化是有机合成中最重要的转化之一,可以使用溴和许多其他溴化合物进行。在有机合成中使用分子溴是众所周知的。然而,由于溴的危害性,在过去几十年中,人们对固体溴载体的开发进行了大量的研究。本文概述了溴和不同的溴有机化合物在有机合成中的应用。共使用了 107 种溴有机化合物、11 种其他溴化剂和几种天然溴源。这些试剂在各种有机转化中的应用范围,如溴化、同卤化、氧化、环化、开环反应、取代、重排、水解、催化等,都有简要描述,以突出溴有机化合物在有机合成中的重要方面。