Olsson Vilhelm J, Szabó Kálmán J
Department of Organic Chemistry, Stockholm University, SE-106 91 Stockholm, Sweden.
J Org Chem. 2009 Oct 16;74(20):7715-23. doi: 10.1021/jo9014694.
This paper describes an efficient carbon-carbon bond formation reaction, which is based on carbon-hydrogen bond functionalization of unactivated alkenes. This process is based on in situ generation of allylic and vinylic boronates by iridium-catalyzed borylation of alkenes followed by carbon-carbon bond formation reactions. The selectivity of the carbon-hydrogen bond functionalization can be efficiently controlled for cyclic alkenes. By using additives, such as methylimidazole and DBU, the iridium-catalyzed borylation led to formation of allyl boronates, which reacted with aldehydes in a one-pot sequence affording stereodefined homoallylic alcohols. Cycloalkenes without additives as well as acyclic substrates gave vinylic boronates, which were coupled with organohalides in a Suzuki-Miyaura sequence. By this process allylic and vinylic silabutadiene derivatives can be prepared from allylsilanes with excellent regio- and stereoselectivity. The mechanism of the carbon-hydrogen bond functionalization based on the borylation reaction was explored by isotope labeling experiments, measuring the kinetic isotope effect and study of the effects of the additives on the selectivity of the process. It was concluded that the reactions proceed via a dehydrogenative borylation mechanism, which shows analogous features with the palladium-catalyzed Heck coupling reaction.
本文描述了一种高效的碳-碳键形成反应,该反应基于未活化烯烃的碳-氢键官能化。此过程基于通过铱催化烯烃硼化原位生成烯丙基硼酸酯和乙烯基硼酸酯,随后进行碳-碳键形成反应。对于环状烯烃,碳-氢键官能化的选择性可得到有效控制。通过使用添加剂,如甲基咪唑和DBU,铱催化的硼化反应生成烯丙基硼酸酯,其与醛在一锅反应序列中反应,得到立体定向的高烯丙醇。无添加剂的环烯烃以及非环状底物生成乙烯基硼酸酯,其在铃木-宫浦反应序列中与有机卤化物偶联。通过该过程,可以从烯丙基硅烷以优异的数据和立体选择性制备烯丙基和乙烯基硅丁二烯衍生物。通过同位素标记实验、测量动力学同位素效应以及研究添加剂对该过程选择性的影响,探索了基于硼化反应的碳-氢键官能化机理。得出的结论是,反应通过脱氢硼化机理进行,该机理与钯催化的赫克偶联反应具有类似特征。