Department of Chemistry, University of Illinois, Urbana, Illinois 61801-3602, USA.
J Am Chem Soc. 2011 Mar 2;133(8):2772-82. doi: 10.1021/ja1057949. Epub 2011 Feb 10.
A detailed mechanistic study of the intramolecular hydroamination of alkenes with amines catalyzed by rhodium complexes of a biaryldialkylphosphine is reported. The active catalyst is shown to contain the phosphine ligand bound in a κ(1), η(6) form in which the arene is π-bound to rhodium. Addition of deuterated amine to an internal olefin showed that the reaction occurs by trans addition of the N-H bond across the C═C bond, and this stereochemistry implies that the reaction occurs by nucleophilic attack of the amine on a coordinated alkene. Indeed, the cationic rhodium fragment binds the alkene over the secondary amine, and the olefin complex was shown to be the catalyst resting state. The reaction was zero-order in substrate, when the concentration of olefin was high, and a primary isotope effect was observed. The primary isotope effect, in combination with the observation of the alkene complex as the resting state, implies that nucleophilic attack of the amine on the alkene is reversible and is followed by turnover-limiting protonation. This mechanism constitutes an unusual pathway for rhodium-catalyzed additions to alkenes and is more closely related to the mechanism for palladium-catalyzed addition of amide N-H bonds to alkenes.
报道了手性双芳基二烷基膦配体铑配合物催化的烯烃与胺的分子内环胺化的详细机理研究。结果表明,活性催化剂中膦配体以κ(1), η(6)的形式与铑配位,其中芳基以π键合的方式与铑配位。向内部烯烃中加入氘代胺表明,反应通过 N-H 键在 C═C 键上的反式加成进行,这种立体化学表明反应通过胺对配位烯烃的亲核进攻发生。事实上,阳离子铑片段通过仲胺结合烯烃,并且烯丙基络合物被证明是催化剂的静止状态。当烯烃浓度较高时,反应在底物中呈零级反应,并且观察到一级同位素效应。一级同位素效应,结合烯烃复合物作为静止状态的观察结果,表明胺对烯烃的亲核进攻是可逆的,随后是周转限制的质子化。这种机制构成了铑催化烯烃加成的一种不寻常途径,与钯催化酰胺 N-H 键加成烯烃的机制更为密切相关。