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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >(Pyridyl)benzoazole ruthenium(II) and ruthenium(III) complexes: role of heteroatom and ancillary phosphine ligand in the transfer hydrogenation of ketones
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(Pyridyl)benzoazole ruthenium(II) and ruthenium(III) complexes: role of heteroatom and ancillary phosphine ligand in the transfer hydrogenation of ketones

机译:(吡啶基)苯并唑钌(II)和钌(III)配合物:杂原子和辅助膦配体在酮转移氢化中的作用

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The synthesis and structural characterization of ruthenium complexes supported by 2-(2-pyridyl)benzoazole ligands and their evaluation as catalysts in the transfer hydrogenation of ketones are reported. Reactions of 2-(2-pyridyl)benzoimidazole (L1), 2-(2-pyridyl)benzothiazole (L2) and 2-(2-pyridyl)benzoxazole (L3) with RuCl_3?3H_2O produced the corresponding complexes [RuCl_3(L1)] (1), [RuCl_3(L2)] (2) and [RuCl_3(L3)] (3), respectively. Similarly, treatment of L1-L3 with RuCl_2(PPh_3)_2 afforded the corresponding Ru(II) complexes [RuCl_2(PPh_3)_2(L1)] (4), [RuCl_2(PPh_3)_2(L2)] (5) and [RuCl_2(PPh_3)_2(L3)] (6), respectively. Solid state structures of 1 and 2 confirmed the bidentate coordination mode of L1 and L2 to ruthenium. 31P{1H} NMR spectroscopy revealed coordination of two PPh_3 ligands trans to each other in an octahedral environment in 4-6 as confirmed by the solid state structure of 6. Complexes 1-6 produced active catalysts in the transfer hydrogenation of ketones in 2-propanol at 82 °C. Ruthenium(II) complexes 4-6, containing the PPh_3 ligand, exhibited higher catalytic activities than the corresponding ruthenium(III) compounds 1-3. Complexes 1 and 4 of L1 were more active than the corresponding complexes of L2 and L3. Density functional theoretical calculations showed that dipole moments of 1-6 control their catalytic activities.
机译:报道了2-(2-吡啶基)苯并唑配体负载的钌配合物的合成和结构表征,以及它们在酮转移氢化中作为催化剂的评价。 2-(2-吡啶基)苯并咪唑(L1),2-(2-吡啶基)苯并噻唑(L2)和2-(2-吡啶基)苯并恶唑(L3)与RuCl_3?3H_2O的反应生成相应的配合物[RuCl_3(L1) ](1),[RuCl_3(L2)](2)和[RuCl_3(L3)](3)。同样,用RuCl_2(PPh_3)_2处理L1-L3得到相应的Ru(II)配合物[RuCl_2(PPh_3)_2(L1)](4),[RuCl_2(PPh_3)_2(L2)](5)和[ RuCl_2(PPh_3)_2(L3)](6)。 1和2的固态结构证实了L1和L2与钌的双齿配位模式。 31P {1H} NMR光谱显示,在6-6的固态结构中,在八面体环境中,两个PPh_3配体在六面体中相互配位,这由6的固态结构证实。配合物1-6在2-的酮转移氢化中产生了活性催化剂丙醇在82°C。含有PPh_3配体的钌(II)配合物4-6表现出比相应的钌(III)化合物1-3更高的催化活性。 L1的配合物1和4比L2和L3的相应配合物更具活性。密度泛函理论计算表明,偶极矩为1-6可以控制其催化活性。

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