首页> 外文期刊>Journal of the American Chemical Society >Electronic structure of bis(imino)pyridine iron dichloride, monochloride, and neutral ligand complexes: A combined structural, spectroscopic, and computational study
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Electronic structure of bis(imino)pyridine iron dichloride, monochloride, and neutral ligand complexes: A combined structural, spectroscopic, and computational study

机译:双(亚氨基)吡啶二氯化铁,一氯化物和中性配体配合物的电子结构:组合的结构,光谱和计算研究

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The electronic structure of a family of bis(imino) pyridine iron dihalide, monohalide, and neutral ligand compounds has been investigated by spectroscopic and computational methods. The metrical parameters combined with Mossbauer spectroscopic and magnetic data for ((i)PrPDl)FeCl2 ((i)PrPDl) 2,6- (2,6-(Pr2C6H3N)-Pr-i=CMe)(2)C5H3N) established a high-spin ferrous center ligated by a neutral bis(imino) pyridine ligand. Comparing these data to those for the single electron reduction product, ((i)PrPDl)FeCl, again demonstrated a high-spin ferrous ion, but in this case the S-Fe = 2 metal center is antiferromagnetically coupled to a ligand-centered radical (S-L 1/2), accounting for the experimentally observed S = 3/2 ground state. Continued reduction to ((PrPDI)-Pr-i)FeLn (L = N-2, n = 1,2; CO, n = 2; 4-(N,N-dimethylamino)pyridine, n = 1) resulted in a doubly reduced bis(imino)pyridine diradical, preserving the ferrous ion. Both the computational and the experimental data for the N,N-(dimethylamino)pyridine compound demonstrate nearly isoenergetic singlet (S-L = 0) and triplet (S-L = 1) forms of the bis(imino)pyridine dianion. In both spin states, the iron is intermediate spin (S-Fe = 1) ferrous. Experimentally, the compound has a spin singlet ground state (S = 0) due to antiferromagnetic coupling of iron and the ligand triplet state. Mixing of the singlet diradical excited state with the triplet ground state of the ligand via spin-orbit coupling results in temperature-independent paramagnetism and accounts for the large dispersion in H-1 NMR chemical shifts observed for the in-plane protons on the chelate. Overall, these studies establish that reduction of ((i)PrPDl)FeCl2 with alkali metal or borohydride reagents results in sequential electron transfers to the conjugated pi-system of the ligand rather than to the metal center.
机译:已通过光谱和计算方法研究了双(亚氨基)吡啶二卤化铁,一卤化物和中性配体化合物的电子结构。将((i)PrPD1)FeCl2((i)PrPD1)2,6-(2,6-(Pr2C6H3N)-Pr-i = CMe)(2)C5H3N的度量参数与Mossbauer光谱和磁数据相结合,建立了一个高旋转的亚铁中心被中性双(亚氨基)吡啶配体连接。将这些数据与单电子还原产物((i)PrPD1)FeCl的数据进行比较,再次证明了高自旋亚铁离子,但在这种情况下,S-Fe = 2金属中心反铁磁耦合至以配体为中心的自由基(SL 1/2),说明实验观察到的S = 3/2基态。连续还原为((PrPDI)-Pr-1)FeLn(L = N-2,n = 1,2; CO,n = 2; 4-(N,N-二甲基氨基)吡啶,n = 1)导致双还原双(亚氨基)吡啶双自由基,保留亚铁离子。 N,N-(二甲基氨基)吡啶化合物的计算和实验数据均显示了双(亚氨基)吡啶二价阴离子的几乎等能量单线态(S-L = 0)和三线态(S-L = 1)形式。在两种自旋状态下,铁均为中间自旋(S-Fe = 1)亚铁。实验上,由于铁与配体三重态的反铁磁耦合,该化合物具有自旋单重态基态(S = 0)。通过自旋-轨道偶合,单重双自由基激发态与配体的三重基态混合导致温度无关的顺磁性,并解释了在螯合物上观察到的质子在H-1 NMR化学位移中的较大分散。总体而言,这些研究证实,用碱金属或硼氢化物试剂还原((i)PrPD1)FeCl2导致顺序的电子转移至配体的共轭pi系统,而不是金属中心。

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