Alcaide Benito, Almendros Pedro, Alonso Jose M
Departamento de Química Orgánica I, Facultad de Química, Universidad Complutense de Madrid, 28040 Madrid, Spain.
Chemistry. 2003 Dec 5;9(23):5793-9. doi: 10.1002/chem.200305236.
A novel application of the Grubbs carbene complex has been discovered. The first examples of the catalytic deprotection of allylic amines with reagents other than palladium catalysts have been achieved through Grubbs carbene mediated reaction. Significantly, the catalytic system directs the reaction toward the selective deprotection of allylic amines (secondary as well as tertiary) in the presence of allylic ethers. A variety of substrates, including enantiomerically pure multifunctional piperidines, are also usable. The new method is more convenient, chemoselective, and operationally simple than the palladium-catalyzed method. The current mechanistic hypothesis invokes a nitrogen-assisted ruthenium-catalyzed isomerization, followed by hydrolysis of the enamine intermediate. We believe that the reactive species involved in the reaction may be an Rubond;H species rather than the Grubbs carbene itself. Thus, the isomerization may occur according to the hydride mechanism. The synthetic utility of this ruthenium-catalyzed allyl cleavage is illustrated by the preparation of indolizidine-type alkaloids.
已发现格拉布卡宾配合物的一种新应用。通过格拉布卡宾介导的反应,首次实现了用钯催化剂以外的试剂对烯丙基胺进行催化脱保护。值得注意的是,该催化体系能在烯丙基醚存在的情况下,使反应朝着烯丙基胺(仲胺和叔胺)的选择性脱保护方向进行。包括对映体纯的多功能哌啶在内的多种底物也都适用。新方法比钯催化法更方便、具有化学选择性且操作简单。目前的机理假设是氮辅助的钌催化异构化,随后烯胺中间体水解。我们认为反应中涉及的活性物种可能是一种Rubond;H物种,而非格拉布卡宾本身。因此,异构化可能按氢化物机理发生。吲哚里西啶型生物碱的制备说明了这种钌催化的烯丙基裂解反应的合成效用。