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两种交叉桥连四氮杂大环的拓扑受限锰(III)和铁(III)配合物。

Topologically constrained manganese(III) and iron(III) complexes of two cross-bridged tetraazamacrocycles.

作者信息

Hubin T J, McCormick J M, Alcock N W, Busch D H

机构信息

Chemistry Departments, University of Kansas, Lawrence, Kansas 66045, USA.

出版信息

Inorg Chem. 2001 Jan 29;40(3):435-44. doi: 10.1021/ic9912225.

Abstract

A family of Mn3+ and Fe3+ complexes of 4,11-dimethyl-1,4,8,11-tetraazabicyclo[6.6.2]hexadecane (1) and 4,10-dimethyl-1,4,7,10-tetraazabicyclo[5.5.2]tetradecane (2) has been prepared by the chemical oxidation of the divalent manganese and iron analogues. The ligands are ethylene cross-bridged tetraazamacrocycles derived from cylam and cyclen, respectively. The synthesis and characterization of these complexes, including X-ray crystal structure determinations, are described. The structural evidence demonstrates that the tetradentate ligands enforce distorted octahedral geometries on the metal ions, with two cis sites occupied by labile ligands. Magnetic measurements reveal that the complexes are high spin with typical magnetic moments. Cyclic voltammetry shows reversible redox processes for the Fe3+/Fe2+ couples of the iron(III) complexes, while Mn3+/Mn2+ and Mn4+/Mn3+ couples were observed for the complexes with manganese(III). The manganese chemistry of 1 was studied in depth. The dichloro manganese(III) cation of 1 undergoes facile ligand substitution reactions at the labile, monodentate sites, for example substituting azide for chloride ligands. Air oxidation of the dichloro complex of Mn (1)2+ in basic solution does not give the expected mu-oxo dimeric product common to manganese. Instead, an unusual manganese(III)-OH complex has been isolated from this reaction and structurally characterized. A similar reaction under slightly different conditions gives a putative MnIII(OH)2 complex that metathesizes to MnIII(OMe)2 upon recrystallization from methanol.

摘要

通过二价锰和铁类似物的化学氧化制备了4,11 - 二甲基 - 1,4,8,11 - 四氮杂双环[6.6.2]十六烷(1)和4,10 - 二甲基 - 1,4,7,10 - 四氮杂双环[5.5.2]十四烷(2)的一系列Mn3 +和Fe3 +配合物。这些配体分别是源自cylam和cyclen的乙烯交叉桥连四氮大环。描述了这些配合物的合成和表征,包括X射线晶体结构测定。结构证据表明,四齿配体使金属离子形成扭曲的八面体几何构型,两个顺式位点被不稳定配体占据。磁性测量表明这些配合物是高自旋的,具有典型的磁矩。循环伏安法显示铁(III)配合物的Fe3 + / Fe2 +电对具有可逆的氧化还原过程,而对于锰(III)配合物观察到Mn3 + / Mn2 +和Mn4 + / Mn3 +电对。对1的锰化学进行了深入研究。1的二氯锰(III)阳离子在不稳定的单齿位点发生容易的配体取代反应,例如用叠氮化物取代氯配体。在碱性溶液中对Mn(1)2 +的二氯配合物进行空气氧化,没有得到锰常见的预期的μ-氧二聚体产物。相反,从该反应中分离出一种不寻常的锰(III) - 羟基配合物并对其进行了结构表征。在稍微不同的条件下进行类似反应,得到一种假定的MnIII(OH)2配合物,该配合物在从甲醇中重结晶时发生复分解反应生成MnIII(OMe)2。

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