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α-卤代羰基化合物作为一种重要的官能化叔烷基来源。

α-Halocarbonyls as a Valuable Functionalized Tertiary Alkyl Source.

作者信息

Nishikata Takashi

机构信息

Graduate School of Science and Engineering, Yamaguchi University, 2-16-1 Tokiwadai, Ube, Yamaguchi, 755-8611, Japan.

出版信息

ChemistryOpen. 2024 Oct;13(10):e202400108. doi: 10.1002/open.202400108. Epub 2024 Jul 11.

Abstract

This review introduces the synthetic organic chemical value of α-bromocarbonyl compounds with tertiary carbons. This α-bromocarbonyl compound with a tertiary carbon has been used primarily only as a radical initiator in atom transfer radical polymerization (ATRP) reactions. However, with the recent development of photo-radical reactions (around 2010), research on the use of α-bromocarbonyl compounds as tertiary alkyl radical precursors became popular (around 2012). As more examples were reported, α-bromocarbonyl compounds were studied not only as radicals but also for their applications in organometallic and ionic reactions. That is, α-bromocarbonyl compounds act as nucleophiles as well as electrophiles. The carbonyl group of α-bromocarbonyl compounds is also attractive because it allows the skeleton to be converted after the reaction, and it is being applied to total synthesis. In our survey until 2022, α-bromocarbonyl compounds can be used to perform a full range of reactions necessary for organic synthesis, including multi-component reactions, cross-coupling, substitution, cyclization, rearrangement, stereospecific reactions, asymmetric reactions. α-Bromocarbonyl compounds have created a new trend in tertiary alkylation, which until then had limited reaction patterns in organic synthesis. This review focuses on how α-bromocarbonyl compounds can be used in synthetic organic chemistry.

摘要

本综述介绍了含叔碳的α-溴代羰基化合物的合成有机化学价值。这种含叔碳的α-溴代羰基化合物此前主要仅用作原子转移自由基聚合(ATRP)反应中的自由基引发剂。然而,随着光自由基反应在2010年左右的发展,关于将α-溴代羰基化合物用作叔烷基自由基前体的研究在2012年左右开始流行起来。随着更多实例的报道,α-溴代羰基化合物不仅作为自由基被研究,还被研究其在有机金属反应和离子反应中的应用。也就是说,α-溴代羰基化合物既可以作为亲核试剂,也可以作为亲电试剂。α-溴代羰基化合物的羰基也很有吸引力,因为它能使骨架在反应后发生转化,并且正在被应用于全合成。在我们截至2022年的调查中,α-溴代羰基化合物可用于进行有机合成所需的一系列反应,包括多组分反应、交叉偶联、取代、环化、重排、立体专一性反应、不对称反应。α-溴代羰基化合物在叔烷基化反应中开创了一种新趋势,在此之前叔烷基化反应在有机合成中的反应模式有限。本综述重点关注α-溴代羰基化合物如何用于合成有机化学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0333/12056945/07080cc22dbf/OPEN-13-e202400108-g036.jpg

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