Wile Bradley M, Trovitch Ryan J, Bart Suzanne C, Tondreau Aaron M, Lobkovsky Emil, Milsmann Carsten, Bill Eckhard, Wieghardt Karl, Chirik Paul J
Department of Chemistry and Chemical Biology, Baker Laboratory, Cornell University, Ithaca, New York 14853, USA.
Inorg Chem. 2009 May 4;48(9):4190-200. doi: 10.1021/ic801623m.
Sodium amalgam reduction of the aryl-substituted bis(imino)pyridine iron dibromide complex, ((Et)PDI)FeBr2 ((Et)PDI = 2,6-(2,6-Et2-C6H3N=CMe)2C5H3N), under a dinitrogen atmosphere in pentane furnished the bis(chelate)iron compound, ((Et)PDI)2Fe. Characterization by X-ray crystallography established a distorted four-coordinate iron center with two kappa2-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, iPr, 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)2Fe]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, Mössbauer 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)2Fe]2+ to [(PDI)2Fe] is ligand-based with a concomitant spin change at iron.
在戊烷中,于氮气气氛下用钠汞齐还原芳基取代的二溴化双(亚氨基)吡啶铁配合物((Et)PDI)FeBr₂((Et)PDI = 2,6-(2,6-二乙基 - C₆H₃N = CMe)₂C₅H₃N),得到双(螯合物)铁化合物((Et)PDI)₂Fe。通过X射线晶体学表征确定了一个扭曲的四配位铁中心,带有两个κ² - 双(亚氨基)吡啶配体。将亚胺取代基的空间需求减小到空间位阻较小的芳基环(例如C₆H₄ - 4 - OMe)或烷基(例如环己基、异丙基、顺式桃金娘烷基),通过钠汞齐还原相应的二卤化物也能得到双(螯合物)化合物。通过X射线衍射对具有较小亚胺取代基的化合物进行表征,确定其为六配位、假八面体化合物。在一种情况下,通过还原相应的铁二价阳离子[(PDI)₂Fe]²⁺制备了中性双(螯合物)铁化合物,为先前报道的因还原性太强而无法分离的电化学产生的物种提供了化学确认。利用磁性测量、X射线结构的度量参数、穆斯堡尔光谱以及开壳层、破缺对称性的密度泛函理论计算来确定两种类型(四配位和六配位)中性双(螯合物)化合物的电子结构。实验观察到的S = 1化合物最好描述为具有高自旋亚铁(S(Fe) = 2)中心,与两个双(亚氨基)吡啶自由基阴离子反铁磁耦合。因此,抗磁性的低自旋配合物[(PDI)₂Fe]²⁺到[(PDI)₂Fe]的两电子还原是基于配体的,同时铁的自旋发生变化。