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首页> 外文期刊>Chemistry: A European journal >Enhancing Effects of Salt Formation on Catalytic Activity and Enantioselectivity for Asymmetric Hydrogenation of Isoquinolinium Salts by Dinuclear Halide-Bridged Iridium Complexes Bearing Chiral Diphosphine Ligands
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Enhancing Effects of Salt Formation on Catalytic Activity and Enantioselectivity for Asymmetric Hydrogenation of Isoquinolinium Salts by Dinuclear Halide-Bridged Iridium Complexes Bearing Chiral Diphosphine Ligands

机译:盐形成对带有手性二膦配体的双核卤桥铱配合物对异喹啉鎓盐不对称加氢的催化活性和对映选择性的增强作用

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摘要

Asymmetric hydrogenation of 1- and 3-substituted and 1,3-disubstituted isoquinolinium chlorides using triply halide-bridged dinuclear iridium complexes [{Ir(H)(diphosphine)}(2)(m-Cl)(3)]Cl has been achieved by the strategy of HCl salt formation of isoquinolines to afford the corresponding chiral 1,2,3,4-tetrahydroisoquinolines (THIQs) in high yields and with excellent enantioselectivities after simple basic workup. The effects of salt formation have been investigated by time-course experiments, which revealed that the generation of isoquinolinium chlorides clearly prevented formation of the catalytically inactive dinuclear trihydride complex, which was readily generated in the catalytic reduction of salt-free isoquinoline substrates. Based on mechanistic investigations, including by H-1 and P-31{H-1} NMR studies and the isolation and characterization of several intermediates, the function of the chloride anion of the isoquinolinium chlorides has been elucidated, allowing us to propose a new outer-sphere mechanism involving coordination of the chloride anion of the substrates to an iridium dihydride species along with a hydrogen bond between the chloride ligand and the N-H proton of the substrate salt.
机译:使用三卤化物桥联的双核铱络合物[{Ir(H)(diphosphine)}(2)(m-Cl)(3)Cl的1-和3-取代和1,3-二取代的异喹啉鎓氯化物的不对称氢化通过形成异喹啉盐酸盐盐酸盐的策略可以实现高收率和简单的基本后处理后具有出色的对映选择性的相应的手性1,2,3,4-四氢异喹啉(THIQs)。已通过时程实验研究了成盐的影响,结果表明,异喹啉氯化物的生成明显阻止了无催化活性的无核二氢三氢化物配合物的形成,这在无盐异喹啉底物的催化还原中很容易产生。基于机理研究,包括通过H-1和P-31 {H-1} NMR研究以及几种中间体的分离和表征,阐明了异喹啉氯化物的氯阴离子的功能,从而使我们能够提出新的外球机理涉及底物的氯化物阴离子与二氢化铱物质的配位,以及底物盐的氯化物配体和NH质子之间的氢键。

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