首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Reduction Chemistry of Aryl- and Alkyl-Substituted Bis(imino)pyridine Iron Dihalide Compounds: Molecular and Electronic Structures of [(PDI)(2)Fe] Derivatives
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Reduction Chemistry of Aryl- and Alkyl-Substituted Bis(imino)pyridine Iron Dihalide Compounds: Molecular and Electronic Structures of [(PDI)(2)Fe] Derivatives

机译:芳基和烷基取代的双(亚氨基)吡啶二卤化铁化合物的还原化学:[(PDI)(2)Fe]衍生物的分子和电子结构

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摘要

Sodium amalgam reduction of the aryl-substituted bis(imino)pyridine iron dibromide complex, ((PDI)-P-Et)FeBr2 ((PDI)-P-Et = 2,6-(2,6-Et-2-C6H3N=CMe)(2)C5H3N), under a dinitrogen atmosphere in pentane furnished the bis(chelate)iron compound, ((PDI)-P-Et)(2)Fe. Characterization by X-ray crystallography established a distorted four-coordinate iron center with two kappa(2)-bis(imino)pyridine ligands. Reducing the steric demands of the imine substituent to either a less sterically encumbered aryl ring (e.g., C6H4-4-OMe) or an alkyl group (e.g., Cy, Pr-i, cis-myrtanyl) also yielded bis(chelate) compounds from sodium amalgam reduction of the corresponding dihalide. Characterization of the compounds with smaller imine substituents by X-ray diffraction established six-coordinate, pseudo-octahedral compounds. In one case, a neutral bis(chelate) iron compound was prepared by reduction of the corresponding iron dication, [(PDI)(2)Fe](2+), providing chemical confirmation of electrochemically generated species that were previously reported as too reducing to isolate. Magnetic measurements, metrical parameters from X-ray structures, Mossbauer spectroscopy, and open-shell, broken symmetry DFT calculations were used to establish the electronic structure of both types (four- and six-coordinate) of neutral bis(chelate) compounds. The experimentally observed S = 1 compounds are best described as having high-spin ferrous (S-Fe = 2) centers antiferromagnetically coupled to two bis(imino)pyridine radical anions. Thus, the two-electron reduction of the diamagnetic, low-spin complex [(PDI)(2)Fe](2+) to [(PDI)(2)Fe] is ligand-based with a concomitant spin change at iron.
机译:芳基取代的双(亚氨基)吡啶二溴化铁络合物(((PDI)-P-Et)FeBr2((PDI)-P-Et = 2,6-(2,6-Et-2-C6H3N = CMe)(2)C5H3N),在戊烷中的二氮气氛下,提供双(螯合物)铁化合物((PDI)-P-Et)(2)Fe。通过X射线晶体学表征建立了具有两个kappa(2)-双(亚氨基)吡啶配体的扭曲的四坐标铁中心。将亚胺取代基的空间需求降低至空间上较不易受累的芳基环(例如C6H4-4-OMe)或烷基基团(例如Cy,Pr-i,顺式myrtanyl),还可以从中得到双(螯合物)化合物减少相应的二卤化钠的汞齐。通过X射线衍射表征具有较小亚胺取代基的化合物,建立了六坐标,伪八面体化合物。在一种情况下,通过还原相应的铁指示剂[(PDI)(2)Fe](2+)来制备中性双(螯合物)铁化合物,从而对先前报道过还原的电化学生成物种提供了化学确认。隔离。磁性测量,X射线结构的度量参数,Mossbauer光谱学和开壳破损对称DFT计算用于建立中性双(螯合物)化合物的两种(四坐标和六坐标)电子结构。实验观察到的S = 1化合物最好地描述为具有高铁性亚铁(S-Fe = 2)中心反铁磁耦合至两个双(亚氨基)吡啶基阴离子。因此,抗磁性的低自旋复合物[(PDI)(2)Fe](2+)到[(PDI)(2)Fe]的双电子还原是基于配体的,在铁处伴随有自旋变化。

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