Mashima Kazushi, Higashida Kosuke, Iimuro Atsuhiro, Nagae Haruki, Kita Yusuke
Department of Chemistry, Graduate School of Engineering Science Osaka University, 1-3 Toyonaka, Osaka, 560-8531, Japan.
Chem Rec. 2016 Dec;16(6):2585-2594. doi: 10.1002/tcr.201600079. Epub 2016 Aug 10.
Iridium(III) complexes bearing chiral ligands have proved to be active species in asymmetric hydrogenation of C=N bonds, though there are only a few iridium(III) precursors. We prepared triply halide-bridged dinuclear iridium complexes bearing chiral diphosphine ligands by simple treatment of the iridium(I) precursor, chiral diphosphine, and aqueous hydrogen halide. The strong advantage of these dinuclear iridium complexes is that they are air and moisture stable, leading to easy handling in asymmetric synthesis. The dinuclear iridium complexes exhibited high catalytic activity toward asymmetric hydrogenation of imines and N-heteroaromatics. Moreover, we demonstrated the application of triply halide-bridged dinuclear ruthenium(II) and rhodium(III) catalyst precursors for the asymmetric hydrogenation of ketonic substrates and simple olefins, respectively.
尽管铱(III)前体数量有限,但带有手性配体的铱(III)配合物已被证明是C=N键不对称氢化反应中的活性物种。我们通过简单处理铱(I)前体、手性二膦配体和卤化氢水溶液,制备了带有手性二膦配体的三卤化物桥联双核铱配合物。这些双核铱配合物的显著优点是它们对空气和湿气稳定,便于在不对称合成中操作。双核铱配合物对亚胺和N-杂芳烃的不对称氢化反应表现出高催化活性。此外,我们还分别展示了三卤化物桥联双核钌(II)和铑(III)催化剂前体在酮底物和简单烯烃不对称氢化反应中的应用。