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Hydrogen Bonding Effects on the Electronic Configuration of Five-Coordinate High-Spin Iron(II) Porphyrinates

机译:氢键对五配位高自旋卟啉铁(II)电子构型的影响

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The characterization of a new five-coordinate derivative of (2-methylimidazole)(tetraphe-nylporphinato)iron(II) provides new and unique information about the effects of forming a hydrogen bond to the coordinated imidazole on the geometric and electronic structure of iron in these species. The complex studied has two crystallographically distinct iron sites; one site has an axial imidazole ligand modified by an external hydrogen bond, and the other site has an axial imidazole ligand with no external interactions. The iron atoms at the two sites have distinct geometric features, as revealed in their molecular structures, and distinct electronic structures, as shown by Mossbauer spectroscopy, although both are high spin (S = 2). The molecule with the external hydrogen bond has longer equatorial Fe-N_p bonds, a larger displacement of the iron atom out of the porphyrin plane, and a shorter axial bond compared to its counterpart with no hydrogen bonding. The Moessbauer features are distinct for the two sites, with differing quadrupole splitting and isomer shift values and probably differing signs for the quadrupole splitting as shown by variable-temperature measurements in applied magnetic field. These features are consistent with a significant change in the nature of the doubly populated d orbital and are all in the direction of the dichotomy displayed by related imidazole and imidazolate species where deprotonation leads to major differences. The results points out the possible effects of strong hydrogen bonding in heme proteins.
机译:新型(2-甲基咪唑)(四苯并卟啉)铁(II)的五配位衍生物的表征提供了有关配位咪唑形成氢键对铁的几何和电子结构影响的新的独特信息这些物种。研究的复合物具有两个晶体学上不同的铁位点;一个位点具有通过外部氢键修饰的轴向咪唑配体,而另一个位点具有没有外部相互作用的轴向咪唑配体。 Mossbauer光谱法显示,这两个位点的铁原子具有独特的几何特征(如分子结构所示)和独特的电子结构,尽管两者均为高自旋(S = 2)。与没有氢键的对应分子相比,具有外部氢键的分子具有更长的赤道Fe-N_p键,铁原子从卟啉平面移出的更大位移和较短的轴向键。摩斯鲍尔(Moessbauer)的特征在这两个位置上是不同的,四极分裂和异构体位移值不同,四极分裂的符号也可能不同,如施加磁场中的可变温度测量所示。这些特征与双重居住的d轨道性质的重大变化是一致的,并且都朝着相关的咪唑和咪唑酸盐物种显示二分法的方向发展,其中去质子化导致重大差异。结果指出血红素蛋白中强氢键的可能作用。

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