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The effect of axial ligands and porphyrin substituents on the electronic ground state of low-spin iron(III) porphyrinates

机译:轴向配体和卟啉取代基对低旋转卟啉铁(III)电子基态的影响

摘要

To aid in the understanding of the electronic states of low-spin, bis-pyridine and -imidazole model complexes of the cytochromes b variable temperature proton NMR spectroscopy and EPR spectroscopy have been employed on a series of complexes of tetramesitylporphinatoiron(III), tetra(2,6-dibromophenyl)porphinatoiron(III) perchlorate, tetra(2,6-dichlorophenyl)porphinatoiron(III) perchlorate, tetra(2,6-difluorophenyl)porphin-atoiron(III) perchlorate, and tetra(2,6-dimethoxyphenyl)-porphinatoiron(III) perchlorate where the axial ligands were 4-dimethylaminopyridine, 3,4-dimethylpyridine, 3,5-dimethylpyridine, 4-methylpyridine, 3-methylpyridine, methylpyridine, 3-chloropyridine, 3-cyanopyridine, 4-cyanopyridine, N-methylimidazole, and 2-methylimidazole. Both paramagnetic iron(III) and diamagnetic cobalt(III) porphyrinates were synthesized. The 25°C proton NMR spectra of the cobalt(III) complexes were used to estimate the diamagnetic shifts of the corresponding iron(III) complexes. The proton NMR spectra of the iron(III) complexes were recorded from -90°C to +40°C. Small isotropic shifts and anti-Curie behavior in the pyrrole-proton resonances of the lower basicity pyridine complexes of tetramesitylporphinatoiron(III)+ indicate a (dxz,dyz)⁴(dxy)¹ ground state, and axial ∼4K EPR spectra of the lower basicity complexes and large gmax or rhombic EPR spectra of the higher basicity pyridine complexes of all of the iron(III) porphyrinates studied indicate a shift in electronic ground state from (dxz,dyz)⁴(dxy)¹ for the lower basicity pyridine complexes to (dxy)²(dxz,dyz)³ for the higher basicity pyridine complexes in all cases. The dipolar and contact contributions to the isotropic shift were determined based on estimates of the ground-excited state crossover point and geometric factors obtained from crystal structure data. Variable temperature NOESY and COSY spectra were successful in distinguishing meta from para resonances in the NMR spectra of the tetra-(2,6-dichlorophenyl)porphinatoiron(III) perchlorate bis-2-methylimidazole complex. X-ray crystallographic studies indicated parallel orientation of the axial ligands in tetra-(2,6-difluorophenyl)porphinatoiron(III) perchlorate bis-3,5-dimethylpyridine.
机译:为了帮助理解细胞色素的低自旋,双吡啶和-咪唑模型复合物的电子状态,已对一系列四茂铁卟啉铁(III),四( 2,6-二溴苯基)卟啉铁(III),四(2,6-二氯苯基)卟啉铁(III),四(2,6-二氟苯基)卟啉-铁(III)和四(2,6-二甲氧基苯基) )-卟啉铁(III)的高氯酸盐,其中轴向配体为4-二甲基氨基吡啶,3,4-二甲基吡啶,3,5-二甲基吡啶,4-甲基吡啶,3-甲基吡啶,甲基吡啶,3-氯吡啶,3-氰基吡啶,4-氰基吡啶, N-甲基咪唑和2-甲基咪唑。合成了顺磁性铁(III)和抗磁性钴(III)卟啉。钴(III)配合物的25°C质子NMR光谱用于估算相应铁(III)配合物的反磁性位移。铁(III)配合物的质子NMR光谱从-90°C到+ 40°C记录。四碱式卟啉铁(III)+的较低碱度吡啶配合物的吡咯-质子共振中的小各向同性位移和反居里行为表明(dxz,dyz)⁴(dxy)¹基态,较低的轴向〜4K EPR谱所研究的所有卟啉铁(III)的较高碱度吡啶配合物的碱度配合物和较大的gmax或菱形EPR光谱表明,电子化态从低碱度吡啶配合物的(dxz,dyz)⁴(dxy)¹转变为(dxy)2(dxz,dyz)3用于在所有情况下较高碱性的吡啶配合物。偶极和接触对各向同性位移的贡献是基于对基激发态交叉点的估计以及从晶体结构数据中获得的几何因子来确定的。可变温度的NOESY和COZY光谱成功地区分了高氯酸双(2-,6-二氯苯基)卟啉铁(III)双-2-甲基咪唑配合物的NMR光谱中的对位共振和对位共振。 X射线晶体学研究表明,高氯酸双(3,5-二甲基吡啶)四(2,6-二氟苯基)卟啉铁(III)中的轴向配体平行取向。

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    Watson Charles Todd 1967-;

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  • 年度 1996
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