首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Axial Ligand Orientations in a Distorted Porphyrin Macrocycle: Synthesis, Structure, and Properties of Low-Spin Bis(imidazole)iron(III) and Iron(II) Porphyrinates
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Axial Ligand Orientations in a Distorted Porphyrin Macrocycle: Synthesis, Structure, and Properties of Low-Spin Bis(imidazole)iron(III) and Iron(II) Porphyrinates

机译:扭曲卟啉大环中的轴向配体取向:低旋转双卟啉铁(III)和卟啉铁(II)的合成,结构和性质

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We have reported here, for the first time, the parallel and perpendicular orientation preferences of two planar and unhindered imidazoles as axial ligands (L) while coordinated toward iron(III) and iron(II) porphyrins, respectively, in a nonplanar porphyrinic environment. The synthesis and characterization of low-spin Fe-II(tn-OEP)(L)(2)center dot ClO4 and Fe-II(tn-OEP)(L)(2) are reported. Fe-III(tn-OEP)(L)(2)center dot ClO4 shows rhombic electron paramagnetic resonance (EPR) spectra (at 77 K) in both solid and solution phases that are very characteristic for low-spin (S = 1/2) iron porphyrins with two axial imidazole ligands aligned parallel to each other. Single-point energy calculation is also performed on Fe-III(tn-OEP)(1-Melm)(2)(+) using density functional theory (DFT), which shows that the relative parallel orientations of two 1-Melm are more stable than the perpendicular orientations, X-ray structures of Fe-II(tn-OEP)(1-Melm)(2) and Fe-II-(tn-OEP)(1-Melm)(2)center dot THF are reported that demonstrate, for the first time, the near-perpendicular axial ligand orientation (80.9 and 89.8 degrees, respectively) for iron(II) porphyrins in a distorted macrocyclic environment. Even starting from parallel axial orientations of 1-Melm, geometry optimization using DFT converged well to the perpendicular axial alignment with a 82.54 degrees dihedral angle, which is in close agreement with experiment. This is in sharp contrast to all earlier reports, in which sterically crowded imidazole (such as 2-Melm) or a nearly planar porphyrin core with a "picket fence" environment that restricts the rotation of the axial ligands is required for perpendicular orientation. Electrochemical data obtained from a cyclic voltammetric study for Fe-II(tn-OEP)(L)(2) reveal one-electron oxidation at very high positive potential, which readily explains why the complexes are so stable in air. Bulk oxidation of Fe-II(tn-OEP)(1-Melm)(2) at a constant potential of 0.69 V in dichloromethane with 0.1 M tetrabutylammonium perchlorate as the supporting electrolyte generates Fe-III(tn-OEP)(1-Melm)(2)center dot ClO4, which has the same EPR spectrum and which upon reduction at 0.29 V regenerates Fe-II(M-OEP)(1-Melm)(2) again. Thus, we have demonstrated here, for the first time, that iron(II) and iron(III) porphyrinates with two planar and unhindered axial imidazoles have different orientation preferences in a nonplanar porphyrinic environment.
机译:我们在这里首次报道了在非平面卟啉环境中,两个平面和不受阻碍的咪唑作为轴向配体(L)的平行和垂直取向偏好,同时分别与铁(III)和铁(II)卟啉配位。报告了低自旋Fe-II(tn-OEP)(L)(2)中心点ClO4和Fe-II(tn-OEP)(L)(2)的合成和表征。 Fe-III(tn-OEP)(L)(2)中心点ClO4在固相和溶液相中均显示出菱形电子顺磁共振(EPR)光谱(在77 K时),这对于低旋转(S = 1 / 2)具有两个轴向平行排列的咪唑配体的铁卟啉。还使用密度泛函理论(DFT)对Fe-III(tn-OEP)(1-Melm)(2)(+)进行了单点能量计算,这表明两个1-Melm的相对平行取向更大。据报道,Fe-II(tn-OEP)(1-Melm)(2)和Fe-II-(tn-OEP)(1-Melm)(2)中心点THF的X射线结构比垂直方向稳定首次证明在扭曲的大环环境中,卟啉铁(II)的近垂直轴向配体取向(分别为80.9和89.8度)。即使从1-Melm的平行轴向定向开始,使用DFT进行几何优化也可以很好地收敛到具有82.54度二面角的垂直轴向对准,这与实验非常吻合。这与所有较早的报道形成鲜明对比,在所有以前的报道中,垂直取向都需要咪唑(例如2-Melm)在空间上拥挤或具有“轴向栅栏”环境的近乎平坦的卟​​啉核,从而限制了轴向配体的旋转。从Fe-II(tn-OEP)(L)(2)的循环伏安研究获得的电化学数据表明,正电子具有很高的正电势,这很容易解释为什么络合物在空气中如此稳定。 Fe-II(tn-OEP)(1-Melm)(2)在二氯甲烷中以0.1M的恒定电位用0.1 M高氯酸四丁铵作支持物进行批量氧化生成Fe-III(tn-OEP)(1-Melm) )(2)中心点ClO4具有相同的EPR谱,并且在0.29 V还原时会再次生成Fe-II(M-OEP)(1-Melm)(2)。因此,我们首次在这里证明具有两个平面且不受阻碍的轴向咪唑的卟啉铁(II)和铁(III)在非平面卟啉环境中具有不同的取向偏好。

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