Shiota Atsushi, Malinakova Helena C
Department of Chemistry, The University of Kansas, 1251 Wescoe Hall Drive, Lawrence, Kansas 66045.
J Organomet Chem. 2012 May 1;704. doi: 10.1016/j.jorganchem.2011.11.038.
Palladium(II) complexes with an bidentate ligand featuring one C-Pd bond and a Pd-N-donor bond (palladacycles) have been shown to afford improved yields of homoallylic amines from a three-component coupling of boronic acids, allenes and imines in comparison to the yields of homoallylic amines achieved with the originally reported catalyst (Pd(OAc)/P(-Bu)), thus extending the scope of the reaction. P NMR monitoring studies indicate that distinct intermediates featuring Pd-P bonds originate in the reactions catalyzed by either Pd(OAc)/P(-Bu) or the pallada(II)cycle/P(-Bu) systems, suggesting that the role of the pallada(II)cycles is more complex than just precatalysts. The importance of an additional phosphine ligand in the reactions catalyzed the pallada(II)cycles was established, and its role in the catalytic cycle has been proposed. Insights into the nature of the reactive intermediates that limit the performance of the originally reported catalytic systems has been gained.
与具有一个碳 - 钯键和一个钯 - 氮供体键的双齿配体形成的钯(II)配合物(钯环)已被证明,与最初报道的催化剂(Pd(OAc)/P(-Bu))相比,在硼酸、丙二烯和亚胺的三组分偶联反应中能提高高烯丙基胺的产率,从而扩大了反应范围。磷核磁共振监测研究表明,具有钯 - 磷键的不同中间体源自由Pd(OAc)/P(-Bu)或钯(II)环/P(-Bu)体系催化的反应,这表明钯(II)环的作用比仅仅作为预催化剂更为复杂。已确定了在钯(II)环催化的反应中额外膦配体的重要性,并提出了其在催化循环中的作用。对限制最初报道的催化体系性能的反应性中间体的性质有了深入了解。