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首页> 外文期刊>Organometallics >Synthesis, Structure, and Bonding Properties of Ruthenium Complexes Possessing a Boron-Based PBP Pincer Ligand and Their Application for Catalytic Hydrogenation
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Synthesis, Structure, and Bonding Properties of Ruthenium Complexes Possessing a Boron-Based PBP Pincer Ligand and Their Application for Catalytic Hydrogenation

机译:含硼基PBP夹钳配体的钌配合物的合成,结构和键合性质及其在催化加氢中的应用

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In addition to our previous works for PBP-pincer metal complexes, four PBP-pincer Ru complexes, [PBP]Ru(Cl)(CO) (2), [PBP]Ru(CO)(eta(2)-BH4) (3), [PBP](mu-H)(2)Ru(OAc-eta O-2) (4), and [PBP](mu-H)(2)Ru(eta(2)-BH4) (5) were synthesized. All the obtained complexes were characterized by NMR and IR spectroscopy, X-ray crystallography, elemental analysis, and DFT calculation with AIM analysis. Through the structural analysis, two types of interaction between boron atoms and ruthenium atoms in 35 were revealed. One is the typical two-centertwo-electron bond between the boron atom of the PBP ligand and the Ru atom, associated with bridging hydride ligand(s) on the Ru(IV) center. The other is an ionic interaction between the Ru fragment and the tetrahydroborate anion. On comparison of the structural features, vibrational analysis, NBO analysis, and AIM analysis of the obtained compounds with those of the previously reported complexes having similar interactions among B, H, and Ru atoms, the interactions in 4 and 5 were proven to be different from that previously reported. The obtained complexes 35 were applied as catalysts for the hydrogenation of aldehyde. Complex 5 showed the highest catalytic activity and widest range of substrate scope. Two mechanisms for the catalytic cycle were proposed with an initial dissociation of BH3 or anionic ligand, according to the control experiments.
机译:除了我们先前针对PBP-钳子金属配合物的工作之外,还有四种PBP-钳子Ru配合物[PBP] Ru(Cl)(CO)( 2 )和[PBP] Ru(CO)(eta) (2)-BH4)( 3 ),[PBP](mu-H)(2)Ru(OAc-eta O-2)( 4 )和[合成了PBP](mu-H)(2)Ru(eta(2)-BH4)( 5 )。所有获得的配合物均通过NMR和IR光谱,X射线晶体学,元素分析和AIM分析进行DFT表征。通过结构分析,揭示了 35 中硼原子和钌原子之间的两种相互作用。一种是PBP配体的硼原子与Ru原子之间的典型的两中心双电子键,与Ru(IV)中心的氢化物配体桥接。另一个是Ru片段和四氢硼酸根阴离子之间的离子相互作用。在比较所获得化合物与先前报道的在B,H和Ru原子之间具有相似相互作用的配合物的结构特征,振动分析,NBO分析和AIM分析后, 4 之间的相互作用和 5 被证明与以前报道的不同。将得到的配合物 35 用作醛加氢的催化剂。配合物 5 表现出最高的催化活性和最大的底物范围。根据控制实验,提出了BH3或阴离子配体初始解离的两种催化循环机理。

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