Jun Chul-Ho, Park Jung-Woo
Department of Chemistry, Yonsei University, 120-749, Seoul, South Korea,
Top Curr Chem. 2014;346:59-83. doi: 10.1007/128_2013_493.
This review describes recent advances that have been made in studies of transition metal-promoted metal-organic cooperative C-C single bond activation reactions of unstrained organic substances, which use 2-aminopicoline as a temporal chelating ligand. In addition, metal-organic cooperative C-C double bond and C-C triple bond cleavage processes are discussed in association with transition metal-catalyzed C-H bond activation. Recent progress made in these areas has opened up the new paradigms in synthetic organic chemistry for the construction of organic frameworks by structural reorganization of organic backbones. Among the many strategies devised, chelation-assisted C-C bond cleavage reactions, which operate through cooperation between metal complexes and organic substances, have attracted perhaps the greatest attention. Utilizing this approach, efficient C-C single bond activation reactions have been developed for a variety of substrates, including linear alkyl ketones, secondary alcohols, primary amines, and cycloalkanones. In addition, reactions that lead to cleavage of C-C double and triple bonds can be facilitated by using the metal-organic cooperation strategy. C-C double bonds in α,β-enones can be cleaved by addition of cyclohexylamine, which facilitates Michael addition and retro-Mannich type fragmentation cascades proceeding via β-aminoketimine intermediates. Aldehydes, which serve as one of the fragmentation products of these processes, can be trapped by chelation-assisted hydroacylation reactions to produce ketones. Finally, C-C triple bond cleavage of alkynes can be achieved through hydroacylation reactions with aldehydes and subsequent C-C double bond cleavage of the resulting α,β-enones.
本综述描述了在过渡金属促进的、以2-氨基吡啶为临时螯合配体的无张力有机物质的金属-有机协同C-C单键活化反应研究中取得的最新进展。此外,还结合过渡金属催化的C-H键活化讨论了金属-有机协同C-C双键和C-C三键的裂解过程。这些领域的最新进展为通过有机骨架的结构重组构建有机框架的合成有机化学开辟了新的范式。在设计的众多策略中,通过金属配合物与有机物质之间的协同作用进行的螯合辅助C-C键裂解反应可能吸引了最多的关注。利用这种方法,已经为包括线性烷基酮、仲醇、伯胺和环烷酮在内的多种底物开发了高效的C-C单键活化反应。此外,使用金属-有机协同策略可以促进导致C-C双键和三键裂解的反应。α,β-烯酮中的C-C双键可以通过加入环己胺裂解,这促进了通过β-氨基酮亚胺中间体进行的迈克尔加成和逆曼尼希型碎片化级联反应。作为这些过程的碎片化产物之一的醛,可以通过螯合辅助的氢酰化反应捕获以生成酮。最后,炔烃的C-C三键裂解可以通过与醛的氢酰化反应以及随后所得α,β-烯酮的C-C双键裂解来实现。