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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Cooperative double deprotonation of bis(2-picolyl)amine leading to unexpected bimetallic mixed valence (M~(-I), M~I) rhodium and iridium complexes
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Cooperative double deprotonation of bis(2-picolyl)amine leading to unexpected bimetallic mixed valence (M~(-I), M~I) rhodium and iridium complexes

机译:双(2-吡啶甲基)胺的协同双去质子化导致意外的双金属混合价(M〜(-I),M〜I)铑和铱配合物

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Cooperative reductive double deprotonation of the complex [Rh ~I(bpa)(cod)]~+ ([4]~+, bpa = PyCH _2NHCH_2Py) with one molar equivalent of base produces the bimetallic species [(cod)Rh(bpa-2H)Rh(cod)] (7), which displays a large Rh -I,RhI contribution to its electronic structure. The doubly deprotonated ligand in 7 hosts the two "Rh(cod)" fragments in two distinct compartments: a "square planar compartment" consisting of one of the Py donors and the central nitrogen donor and a "tetrahedral π-imine compartment" consisting of the other pyridine and an "imine C=N" donor. The formation of an "imine donor" in this process is the result of substantial electron transfer from the {bpa-2H}~(2-) ligand to one of the rhodium centers to form the neutral imine ligand bpi (bpi = PyCH_2N=CHPy). Hence, deprotonation of [Rh~I(bpa)(cod)] ~+ represents a reductive process, effectively leading to a reduction of the metal oxidation state from Rh~I to Rh~(-I). The dinuclear iridium counterpart, complex 8, can also be prepared, but it is unstable in the presence of 1 mol equiv of the free bpa ligand, leading to quantitative formation of the neutral amido mononuclear compound [Ir ~I(bpa-H)(cod)] (2). All attempts to prepare the rhodium analog of 2 failed and led to the spontaneous formation of 7. The thermodynamic differences are readily explained by a lower stability of the M~(-I) oxidation state for iridium as compared to rhodium. The observed reductive double deprotonation leads to the formation of unusual structures and unexpected reactivity, which underlines the general importance of "redox noninnocent ligands" and their substantial effect on the electronic structure of transition metals.
机译:配合物[Rh〜I(bpa)(cod)]〜+([4]〜+,bpa = PyCH _2NHCH_2Py)与一摩尔当量碱的协同还原性双去质子化生成双金属物质[(cod)Rh(bpa- [2H)Rh(cod)](7),显示了对电子结构的大Rh -I,RhI贡献。 7中的双去质子化配体在两个不同的区室中携带两个“ Rh(cod)”片段:由Py供体和中央氮供体之一组成的“方形平面区室”和由以下两个组成的“四面体π亚胺区室”另一个吡啶和“亚胺C = N”供体。在此过程中形成“亚胺供体”是大量电子从{bpa-2H}〜(2-)配体转移至一个铑中心以形成中性亚胺配体bpi的结果(bpi = PyCH_2N = CHPy )。因此,[Rh〜I(bpa)(cod)]〜+的去质子化代表还原过程,有效地导致金属氧化态从Rh〜I还原为Rh〜(-I)。也可以制备双核铱对应物配合物8,但在1摩尔当量的游离bpa配体存在下不稳定,从而导致定量形成中性酰胺单核化合物[Ir〜I(bpa-H)( cod)](2)。制备2的铑类似物的所有尝试均失败,并导致了7的自发形成。与铑相比,铱的M〜(-1)氧化态稳定性较低,很容易解释了热力学差异。观察到的还原性双去质子化导致形成异常的结构和意外的反应性,这突出了“氧化还原非纯配体”的一般重要性及其对过渡金属电子结构的实质性影响。

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