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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 >CHEMISTRY OF IRON(III) IN A HEMIN-LIKE MACROCYCLIC [N-4](2-) ENVIRONMENT - RELATIONSHIP BETWEEN CT ABSORPTION AND EPR SPECTRA
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CHEMISTRY OF IRON(III) IN A HEMIN-LIKE MACROCYCLIC [N-4](2-) ENVIRONMENT - RELATIONSHIP BETWEEN CT ABSORPTION AND EPR SPECTRA

机译:Hemin型大环[N-4](2-)环境中铁(III)的化学性质-CT吸收率与EPR谱的关系

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摘要

The visibleear-IR and EPR spectra of the octahedral low-spin diadducts of the ethylene-bridged complex 6,13-diethoxycarbonyl-5,14-dimethyl-1,4,8,11-tetraazacyclotetradeca-4,6,12 ,14-tetraenato[2(-)]iron(III) iodide (1a-I), the ethylene/phenylene 1b-I, and the phenylene-bridged analogous complex 1c-I were investigated as a function of the axial and equatorial ligands. 1a-I forms octahedral low-spin diadducts in polar solvents (water, methanol) with a large variety of bases (pyridines, imidazoles, ammonia, amines, hydroxide, pseudohalides, sulfite, thiosulfate, nitrite, isonitriles, phosphines, phosphites, etc.). The diadducts show a characteristic sharp equatorial ligand (pi) to ferric (t(2g)) ion charge-transfer (CT) transition in the visible or near-IR. The energy of the maximum (E-CT) shows a bathochromic shift with increasing pi acceptor strength and/or decreasing basicity of the axial ligands. The EPR spectra of the diadducts in frozen solution (77 K) are of rhombic type. In the case of the phosphorus ligand diadducts, a superhyperfine splitting was found, which indicates the coupling of two phosphorus nuclei with the unpaired electron of the iron(III). Using Taylor's model, the relative energies of the t(2g) orbitals was calculated from the g values to characterize the symmetry of the ligand field. The low symmetry of the equatorial ligands is mainly responsible for tetragonal and rhombic ligand field distortion, which is in contrast to the more symmetric phorphyrin ligands which effect only a tetragonal distortion. The splitting of the t(2g) orbitals is greatly enlarged with increasing pi acceptor ability of the axial ligand. In the order [1a-X-2](+), [1b-X-2](+), [1c-X-2](+), FeTPPX2+, the energy E-CT and the t(2g) orbital splitting decrease as the pi conjugation of the equatorial ligand increases. In contrast to the investigations of hemoproteins, no positive correlation between E-CT and E-EPR (the energy of the Fe(III) hole relative to the baricenter of the t(2g) 3d subshell) was found. Generally, the CT energy increases as the orbital splitting decreases. [References: 44]
机译:乙烯桥联复合物6,13-​​二乙氧基羰基-5,14-二甲基-1,4,8,11-四氮杂环十四碳-4,6,12的八面体低旋二价加合物的可见/近红外和EPR光谱,作为轴向和赤道配体的函数,研究了14-四萘并[2(-)]碘化铁(III)(1a-1),乙烯/亚苯基1b-1和亚苯基桥连的类似络合物1c-1。 1a-I在极性溶剂(水,甲醇)中以多种碱(吡啶,咪唑,氨,胺,氢氧化物,假卤化物,亚硫酸盐,硫代硫酸盐,亚硝酸盐,异腈,膦,亚磷酸盐等)形成八面体低旋二价加成物。 )。二加合物在可见光或近红外光中表现出从尖锐的赤道配体(pi)到铁(t(2g))离子电荷转移(CT)的跃迁。最大能量(E-CT)随着pi受体强度的增加和/或轴向配体碱度的降低而出现红移。冷冻溶液(77 K)中双加合物的EPR光谱为菱形。在磷配体二加合物的情况下,发现超超细分裂,这表明两个磷核与铁(III)的未配对电子偶联。使用泰勒模型,从g值计算出t(2g)轨道的相对能量,以表征配体场的对称性。赤道配体的低对称性主要是造成四方和菱形配体场畸变的原因,这与仅对称于四方畸变的对称性卟啉配体相反。随着轴向配体的pi受体能力的增强,t(2g)轨道的分裂大大扩大。按照[1a-X-2](+),[1b-X-2](+),[1c-X-2](+),FeTPPX2 +,能量E-CT和t(2g)轨道的顺序随着赤道配体的π共轭增加,分裂分裂减少。与对血蛋白的研究相反,未发现E-CT和E-EPR(Fe(III)孔的能量相对于t(2g)3d子壳的重心)之间存在正相关。通常,CT能量随着轨道分裂的减少而增加。 [参考:44]

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