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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >EPR, resonance Raman, and DFT calculations on thiolate- and imidazole-bound iron(III) porphyrin complexes: Role of the axial ligand in tuning the electronic structure
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EPR, resonance Raman, and DFT calculations on thiolate- and imidazole-bound iron(III) porphyrin complexes: Role of the axial ligand in tuning the electronic structure

机译:硫醇盐和咪唑结合的铁(III)卟啉配合物的EPR,共振拉曼和DFT计算:轴向配体在调节电子结构中的作用

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Iron(III) porphyrin complexes bearing covalently attached imidazole and thiolate axial ligands are investigated using resonance Raman, electron paramagnetic resonance, and cyclic voltammetry. The thiolate ligand stabilizes a low-spin ground state in solvent-bound six-coordinate species, weakens the Fe-N _(pyr) bonds, and shifts the Fe III/II potential more negative by ~500 mV relative to an imidazole-bound species. Density functional theory calculations reproduce the experimental observation and indicate that the covalent charge donation from thiolate to iron reduces the Z _(eff) on the iron. This increases the Fe _(3d) orbital energies, which changes the bonding interaction present in these complexes significantly. In particular, the increase of the Fe _(3d) energies activates an iron-to-porphyrin π*-back-bonding interaction not present in the imidazole-bound complex.
机译:使用共振拉曼,电子顺磁共振和循环伏安法研究了带有共价连接的咪唑和硫醇盐轴向配体的铁(III)卟啉配合物。硫醇盐配体稳定了溶剂结合的六配位物种的低自旋基态,削弱了Fe-N _(pyr)键,并使Fe III / II电位相对于与咪唑结合的负电位移动了约500 mV以上种类。密度泛函理论计算重现了实验观察结果,表明从硫醇盐到铁的共价电荷捐赠降低了铁的Z_(eff)。这将增加Fe _(3d)轨道能量,从而显着改变这些复合物中存在的键相互作用。特别地,Fe _(3d)能量的增加激活了在咪唑结合的复合物中不存在的铁与卟啉的π*反向键相互作用。

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