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首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Formation of mu-oxo dimer by the reaction of (meso-tetraphenylporphyrinato)iron(III) with various imidazo les
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Formation of mu-oxo dimer by the reaction of (meso-tetraphenylporphyrinato)iron(III) with various imidazo les

机译:(间-四苯基卟啉铁)铁(III)与各种咪唑类化合物反应形成mu-oxo二聚体

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摘要

Reactions between (meso-tetraphenylporphyrinato)iron(III) perchlorate [Fe(tpp)]ClO4 and various imidazoles have been examined in CD2Cl2 solutions. H-1 NMR analysis revealed the formation of three kinds of complex; mu -oxo dimer, mono-imidazole adduct, and bis-imidazole adduct. The product ratios changed to a great extent depending on the amount and nature of imidazoles. In general, addition of less than 1.0 equiv of imidazole relative to [Fe(tpp)]ClO4 led to the formation of both mu -oxo dimer and mono-imidazole adduct. However, by the addition of excess amount of imidazole. either the mu -oxo dimer or bis-imidazole adduct was formed exclusively depending on the bulkiness of the imidazole used. In the case of bulky imidazole such as 2-methylbenzimidazole or 2-isopropyl-1-methylimidazole, the mu -oxo dimer was formed quantitatively. In the case of less bulky imidazole such as parent imidazole or 1-methylimidazole, bis-imidazole adduct became the sole product. The results have been explained in terms of the difference in steric interactions between the axial ligands and porphyrin core; the severe steric repulsion prohibits the formation of bis-adduct in the case of bulky imidazoles. As a result, bulky imidazoles prefer to behave as a base; they abstract a proton from coordinated water, and lead to the formation of mu -oxo dimer. Thus, the role of bulky imidazoles in these reactions has some relevance to that of distal histidine in hemoglobin and peroxidase. (C) 2001 Published by Elsevier Science B.V. [References: 32]
机译:在CD2Cl2溶液中已研究了(间-四苯基卟啉铁)高氯酸铁(III)[Fe(tpp)] ClO4与各种咪唑之间的反应。 H-1 NMR分析揭示了三种络合物的形成。 μ-氧代二聚体,单咪唑加合物和双咪唑加合物。产物比率在很大程度上取决于咪唑的量和性质。通常,相对于[Fe(tpp)] ClO4加入少于1.0当量的咪唑会导致同时形成mu-oxo二聚体和单咪唑加合物。但是,通过添加过量的咪唑。 mu-oxo二聚体或双-咪唑加合物仅根据所用咪唑的体积而形成。在大体积的咪唑如2-甲基苯并咪唑或2-异丙基-1-甲基咪唑的情况下,μ-氧代二聚体定量形成。在体积较小的咪唑如母体咪唑或1-甲基咪唑的情况下,双咪唑加合物成为唯一的产物。用轴向配体和卟啉核之间的空间相互作用的差异解释了结果。如果是大体积的咪唑,则严重的空间排斥作用会阻止双加合物的形成。结果,笨重的咪唑更喜欢作为碱。他们从协调的水中提取出质子,并导致形成mu -oxo二聚体。因此,大体积咪唑在这些反应中的作用与远端组氨酸在血红蛋白和过氧化物酶中的作用有关。 (C)2001年由Elsevier Science B.V.出版[参考文献:32]

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