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Remarkable Positive Effect of Silver Salts on Asymmetric Hydrogenation of Acyclic Imines with Cp*Ir Complexes Bearing Chiral N-Sulfonylated Diamine Ligands

机译:银盐对带有手性N-磺酰化二胺配体的Cp * Ir配合物对无环亚胺不对称氢化的显着正作用。

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摘要

A family of bifunctional Ir, Rh, and Ru complexes bearing chiral monosulfonylated diamine ligands has been evaluated for asymmetric hydrogenation of acyclic imines (1) to the corresponding amines (2). A chiral Ir complex, [Cp*IrCl{(S,S)-Tscydn}] (3a), combined with silver salts caused a marked improvement in the catalyst performance in terms of the activity and selectivity. The use of an excess amount of the silver salt, AgSbF6, increased enantioselectivity up to 72% ee in the asymmetric hydrogenation of N-(1-phenylethylidene)benzylamine (1a). A stoichiometric reaction of 3a with AgSbF6 in acetonitrile afforded an isolable cationic complex, [Cp*Ir(Tscydn)(CH3CN)]+SbF6- (4) which was fully characterized by NMR spectroscopy and X-ray crystallography. The resulting cationic complex 4 readily reacted with H-2 under ambient conditions in the presence of triethylamine to give a hydridoiridium complex, [Cp*IrH{(S,S)-Tscydn}] (5) and showed comparable catalytic behavior to that for the catalyst system generated in situ from 3a and AgSbF6. On the basis of the additive effect on the outcome of the hydrogenation as well as the C-13{H-1) NMR spectrum of a reaction mixture of imine 1a and AgSbF6, the mechanism of the imine hydrogenation including heterolytic bond cleavage of H2 on a cationic complex to generate a hydrido intermediate and the following H- transfer to the imine substrates activated by the silver cation was proposed.
机译:已评估了带有手性单磺酰化二胺配体的双功能Ir,Rh和Ru配合物家族的无环亚胺(1)不对称氢化为相应的胺(2)的能力。手性Ir络合物[Cp * IrCl {(S,S)-Tscydn}](3a)与银盐的组合在活性和选择性方面引起了催化剂性能的显着改善。在N-(1-苯乙叉基)苄胺(1a)的不对称氢化中,使用过量的银盐AgSbF6可将对映选择性提高至72%ee。 3a与AgSbF6在乙腈中的化学计量反应提供了可分离的阳离子络合物[Cp * Ir(Tscydn)(CH3CN)] + SbF6-(4),已通过NMR光谱和X射线晶体学进行了全面表征。所得的阳离子络合物4在三乙胺的存在下于环境条件下易于与H-2反应,生成氢化铱络合物[Cp * IrH {(S,S)-Tscydn}](5),并显示出可与之相比的催化性能。由3a和AgSbF6原位生成的催化剂体系。根据加成反应对亚胺1a和AgSbF6的氢化反应的加成作用以及C-13 {H-1)NMR光谱的影响,亚胺加氢的机理包括H2的杂合键裂解提出了一种阳离子配合物以生成氢化中间体,并随后将H-转移至由银阳离子活化的亚胺底物上。

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