Department of Chemistry, Brandeis University, 415 South Street, Waltham, Massachusetts 02454, United States.
Inorg Chem. 2012 Aug 6;51(15):8225-40. doi: 10.1021/ic300776y. Epub 2012 Jul 17.
A series of homobimetallic phosphinoamide-bridged diiron and dimanganese complexes in which the two metals maintain different coordination environments have been synthesized. Systematic variation of the steric and electronic properties of the phosphinoamide phosphorus and nitrogen substituents leads to structurally different complexes. Reaction of [(i)PrNKPPh(2)] (1) with MCl(2) (M = Mn, Fe) affords the phosphinoamide-bridged bimetallic complexes [Mn((i)PrNPPh(2))(3)Mn((i)PrNPPh(2))] (3) and [Fe((i)PrNPPh(2))(3)Fe((i)PrNPPh(2))] (4). Complexes 3 and 4 are iso-structural, with one metal center preferentially binding to the three amide ligands in a trigonal planar arrangement while the second metal center is ligated by three phosphine donors. A fourth phosphinoamide ligand caps the tetrahedral coordination sphere of the phosphine-ligated metal center. Mössbauer spectroscopy of complex 4 suggests that the metals in these complexes are best described as Fe(II) centers. In contrast, treatment of MnCl(2) or FeI(2) with [MesNKP(i)Pr(2)] (2) leads to the formation of the halide-bridged species [(THF)Mn(μ-Cl)(MesNP(i)Pr(2))(2)Mn(MesNP(i)Pr(2))] (5) and [(THF)Fe(μ-I)(MesNP(i)Pr(2))(2)FeI (7), respectively. Utilization of FeCl(2) in place of FeI(2), however, leads exclusively to the C(3)-symmetric complex [Fe(MesNP(i)Pr(2))(3)FeCl] (6), structurally similar to 4 but with a halide bound to the phosphine-ligated Fe center. The Mössbauer spectrum of 6 is also consistent with high spin Fe(II) centers. Thus, in the case of the (i)PrNPPh(2) and MesNP(i)Pr(2) ligands, zwitterionic complexes with the two metals in disparate coordination environments are preferentially formed. In the case of the more electron-rich ligand (i)PrNP(i)Pr(2), complexes with a 2:1 mixed donor ligand arrangement, in which one of the ligand arms has reversed orientation relative to the previous examples, are formed exclusively when [(i)PrNLiP(i)Pr(2)] (generated in situ) is treated with MCl(2) (M = Mn, Fe): (THF)(3)LiCl[Mn(N(i)PrP(i)Pr(2))(2)(P(i)Pr(2)N(i)Pr)MnCl] (8) and [Fe(N(i)PrP(i)Pr(2))(2)(P(i)Pr(2)N(i)Pr)FeCl] (9). Bimetallic complexes 3-9 have been structurally characterized using X-ray crystallography, revealing Fe-Fe interatomic distances indicative of metal-metal bonding in complexes 6 and 9 (and perhaps 4, to a lesser extent). All of the complexes appear to adopt high spin electron configurations, and magnetic measurements indicate significant antiferromagnetic interactions in Mn(2) complexes 5 and 8 and no discernible magnetic superexchange in Fe(2) complex 4. The redox behavior of complexes 3-9 has also been investigated using cyclic voltammetry, and theoretical investigations (DFT) were performed to gain insight into the metal-metal interactions in these unique asymmetric complexes.
一系列同双核膦酰胺桥联的二铁和二锰配合物,其中两个金属保持不同的配位环境,已经被合成。膦酰胺磷和氮取代基的空间和电子性质的系统变化导致结构不同的配合物。[(i)PrNKPPh(2)](1)与 MCl(2)(M = Mn,Fe)反应得到膦酰胺桥联的双核配合物[Mn((i)PrNPPh(2))(3)Mn((i)PrNPPh(2))](3)和[Fe((i)PrNPPh(2))(3)Fe((i)PrNPPh(2))](4)。配合物 3 和 4 是同构的,其中一个金属中心优先与三个酰胺配体结合,形成三角平面排列,而第二个金属中心则由三个膦供体配位。第四个膦酰胺配体封闭了膦配位金属中心的四面体配位球。配合物 4 的穆斯堡尔谱表明,这些配合物中的金属最好被描述为 Fe(II)中心。相比之下,MnCl(2)或 FeI(2)与[MesNKP(i)Pr(2)](2)反应,分别形成卤化物桥联物种[(THF)Mn(μ-Cl)(MesNP(i)Pr(2))(2)Mn(MesNP(i)Pr(2))](5)和[(THF)Fe(μ-I)(MesNP(i)Pr(2))(2)FeI](7)。然而,用 FeCl(2)代替 FeI(2),则只得到 C(3)-对称的配合物[Fe(MesNP(i)Pr(2))(3)FeCl](6),与 4 结构相似,但有一个卤化物与膦配位的 Fe 中心结合。6 的穆斯堡尔谱也与高自旋 Fe(II)中心一致。因此,对于(i)PrNPPh(2)和MesNP(i)Pr(2)配体,优先形成两个金属处于不同配位环境的两性离子配合物。对于更富电子的配体(i)PrNP(i)Pr(2),当[(i)PrNLiP(i)Pr(2)](原位生成)与 MCl(2)(M = Mn,Fe)反应时,形成具有 2:1 混合供体配体排列的配合物,其中一个配体臂相对于前例反转方向:(THF)(3)LiCl[Mn(N(i)PrP(i)Pr(2))(2)(P(i)Pr(2)N(i)Pr)MnCl](8)和[Fe(N(i)PrP(i)Pr(2))(2)(P(i)Pr(2)N(i)Pr)FeCl](9)。双核配合物 3-9 的结构通过 X 射线晶体学进行了表征,揭示了 6 和 9(可能还有 4,程度较小)中存在金属-金属键的 Fe-Fe 原子间距离。所有配合物似乎都采用高自旋电子构型,磁测量表明 Mn(2)配合物 5 和 8 中存在显著的反铁磁相互作用,而 Fe(2)配合物 4 中没有可察觉的磁超交换。配合物 3-9 的氧化还原行为也通过循环伏安法进行了研究,并进行了理论研究(DFT),以深入了解这些独特的不对称配合物中的金属-金属相互作用。