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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Novel hydrido-ruthenium(II) complexes with histidine derivatives and their application in the hydrogenation of ketones
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Novel hydrido-ruthenium(II) complexes with histidine derivatives and their application in the hydrogenation of ketones

机译:组氨酸衍生物的新型氢化钌(II)配合物及其在酮加氢中的应用

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The complexes RuHCl((R)-binap)(L-NH2) with L-NH2 = (S)-histidine-Me-ester (1), histamine (3), (S)-histidinol (4) or 1-Me-(S)-histidine-Me-ester (5), and RuHCl((S)-binap)(L-NH2) with L-NH2 = (S)-histidine-Me-ester (2) have been prepared in 60-81% overall yields in a one-pot, three-step procedure from the precursor RuCl2(PPh3)(3). Their octahedral structures with hydride trans to chloride were deduced from their NMR spectra and confirmed by the results of a single crystal X-ray diffraction study for complex 3. Under H-2 and in the presence of KOtBu, complexes 1-5 in 2-propanol form moderately active catalyst precursors for the asymmetric hydrogenation of acetophenone to 1-phenylethanol. Complex 5 is more active and enantioselective than complexes 1 -4, allowing complete conversion to 1-phenylethanol in 46% e.e. (R) in 72 h at 20 degrees C under 1 MPa of H-2 with substrate : catalyst : base = 2000 : 1 : 30. Complex 5, when activated, also catalyzes the hydrogenation of trans-4-phenyl-3-buten-2-one to exclusively the allyl alcohol 4-phenyl-3-buten-2-ol under 2.7 MPa of H-2 at 50 degrees C in 2-propanol. This selectivity for C=O versus C=C hydrogenation is consistent with a mechanism involving the outer sphere transfer of hydride and proton to the polar bond. Further extensions to complexes with peptides with N-terminal histidine groups appear feasible on the basis of the current work.
机译:RuHCl(-binap)(L-NH2)与L-NH2的复合物=(S)-组氨酸-Me-酯(1),组胺(3),(S)-组氨酸(4)或1-Me -(S)-组氨酸-Me-酯(5)和RuHCl((S)-binap)(L-NH2)的L-NH2 =(S)-组氨酸-Me-酯(2)的制备一锅三步法从前驱体RuCl2(PPh3)(3)的总产率为-81%。从其NMR谱推导了它们的氢化物转化为氯化物的八面体结构,并通过对配合物3的单晶X射线衍射研究的结果得到了证实。在H-2和KOtBu存在下,配合物1-5在2-丙醇形成中等活性的催化剂前体,用于苯乙酮不对称氢化成1-苯基乙醇。与配合物1-4-相比,配合物5具有更高的活性和对映选择性,从而可以将其完全转化为46%e.e.的1-苯基乙醇。 (R)在20摄氏度,1 MPa的H-2和72:h下,底物:催化剂:碱= 2000:1:30在2.7 MPa的H-2和50°C的2-丙醇溶液中,将-2-烯丙基醇合成为烯丙基醇4-苯基-3-丁烯-2-醇。 C = O相对于C = C氢化的选择性与涉及氢化物和质子外球转移至极性键的机理一致。在目前的工作基础上,进一步扩展与具有N末端组氨酸基团的肽的复合物是可行的。

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