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Formation of Stable and Metastable Porphyrin- and Corrole-Iron(IV) Complexes and Isomerizations to Iron(III) Macrocycle Radical Cations

机译:稳定和亚稳态的卟啉和Corrole-Iron(IV)配合物的形成和异构化为铁(III)大环自由基阳离子

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摘要

Oxidations of three porphyrin-iron(III) complexes (>1) with ferric perchlorate, Fe(ClO4)3, in acetonitrile solutions at −40 °C gave metastable porphyrin-iron(IV) diperchlorate complexes (>2) that isomerized to known iron(III) diperchlorate porphyrin radical cations (>3) when the solutions were warmed to room temperature. The 5,10,15,20-tetraphenylporphyrin (TPP), 5,10,15,20-tetramesitylporphyrin (TMP), and 2,3,7,8,12,13,17,18-octaethylporphyrin (OEP) systems were studied by UV-visible spectroscopy. Low temperature NMR spectroscopy and effective magnetic moment measurements were possible with the TPP and TMP iron(IV) complexes. Reactions of two corrole systems, 5,10,15-tris(pentafluorophenyl)corrole (TPFC) and 5,15-bis(pentafluorophenyl)-10-p-methoxyphenylcorrole (BPFMC), also were studied. The corrole-iron(IV) chlorides reacted with silver salts to give corrole-iron(IV) complexes. The corrole-iron(IV) nitrate complexes were stable at room temperature. (TPFC)-iron(IV) toslyate, (TPFC)-iron(IV) chlorate, and (BPFMC)-iron(IV) chlorate were metastable and rearranged to their electronic isomers iron(III) corrole radical cations at room temperature. (TPFC)-iron(III) perchlorate corrole radical cation was the only product observed from reaction of the corrole-iron(IV) chloride with silver perchlorate. For the metastable iron(IV) species, the rates of isomerizations to the iron(III) macrocycle radical cation electronic isomers in dilute acetonitrile solutions were relatively insensitive to electron demands of the macrocyclic ligand but reflected the binding strength of the ligand to iron. Kinetic studies at varying temperatures and concentrations indicated that the mechanisms of the isomerization reactions are complex, involving mixed order reactivity.
机译:三种卟啉-铁(III)配合物(> 1 )与高氯酸铁Fe(ClO4)3在乙腈溶液中于-40°C氧化,得到亚稳态的卟啉-铁(IV)二氯配合物(<当溶液温热至室温时,它会异构化成已知的二氯化铁(III)二氯卟啉自由基阳离子(> 3 )。 5,10,15,20-四苯基卟啉(TPP),5,10,15,20-四甲苯基卟啉(TMP)和2,3,7,8,12,13,17,17,18,八乙基卟啉(OEP)系统是通过紫外-可见光谱研究。使用TPP和TMP铁(IV)配合物可以进行低温NMR光谱和有效的磁矩测量。还研究了5,10,15-三(五氟苯基)甲酸酯(TPFC)和5,15-双(五氟苯基)-10-对甲氧基苯基甲酸酯(BPFMC)这两种甲酸酯体系的反应。氯铁(IV)与银盐反应生成氯铁(IV)络合物。硝酸铁-铁(IV)配合物在室温下稳定。 (TPFC)-铁(IV)溶解物,(TPFC)-铁(IV)氯酸盐和(BPFMC)-铁(IV)氯酸盐在室温下被亚稳并重排为它们的电子异构体。 (TPFC)-高氯酸亚铁(III)的自由基是从氯代-铁(IV)与高氯酸银反应中观察到的唯一产物。对于亚稳态的铁(IV)物种,稀乙腈溶液中铁(III)大环自由基阳离子电子异构体的异构化速率对大环配体的电子需求相对不敏感,但反映了配体与铁的结合强度。在不同温度和浓度下进行的动力学研究表明,异构化反应的机理很复杂,涉及混合级反应。

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