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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Iron(III) complexes of the tris-(3-aminopropyl) derivative of a 14-membered tetraazamacrocycle: Potentiometric, spectroscopic and electrochemical studies
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Iron(III) complexes of the tris-(3-aminopropyl) derivative of a 14-membered tetraazamacrocycle: Potentiometric, spectroscopic and electrochemical studies

机译:14元四氮杂大环的三-(3-氨基丙基)衍生物的铁(III)配合物:电位,光谱和电化学研究

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摘要

The properties of the iron(III) complexes of the ditopic macrocyclic ligand with three aminopropyl pendant arms, L-1 =3,7,11-tris-(3-aminopropyl)-3,7,11,17-tetraazabicyclo[11.3.1]heptadeca-1(17),13,15-triene were investigated in aqueous solution. Potentiometric studies indicated the presence of mononuclear [FeHhL1](h+3) (h = 0-3), and dinuclear [Fe2L1](6+), [Fe2L1(OH)](5+) and [Fe2L1(OH)(2)](4+) complexes, and their stability constants were determined at 298.2 K and ionic strength 0.10 mol dm(-3) in KNO3. The log K values of mononuclear protonated species indicated the consecutive deprotonation of the aminopropyl arms, suggesting the nitrogen donor atoms from the macrocycle as the preferred coordination environment for the first metal centre, and the amines from the pendant arms for the second one. The dinuclear complex is formed at about 85% of the total amount of the metal ion for 2:1 Fe:L-1 ratio solutions at pH 4.0-4.5. The log K values of the deprotonation of dinuclear hydrolysed species are consistent with the presence of two water molecules directly bound to the metal centres. Spectroscopic UV-Vis and IR data for 2:1 Fe3+:L-1 ratio samples confirmed the existence of dimlclear and hydroxo dilluclear species. EPR spectra of these solutions were interpreted by an equilibrium of two high-spin d(5) state of iron(III) species with different rhombic E/D distortions. Electrochemical studies also established the formation of mono- and dinuclear complexes, showing irreversible redox behaviour. The two metal centres on the dinuclear complexes have only weak interactions. (C) 2008 Elsevier Ltd. All rights reserved.
机译:具有三个氨基丙基侧链,L-1 = 3,7,11-tris-(3-氨基丙基)-3,7,11,17-四氮杂双环[11.3]的对位大环配体的铁(III)配合物的性质。在水溶液中研究了1] heptadeca-1(17),13,15-三烯。电位研究表明存在单核[FeHhL1](h + 3)(h = 0-3)和双核[Fe2L1](6 +),[Fe2L1(OH)](5+)和[Fe2L1(OH)( 2)](4+)配合物,其稳定常数在298.2 K下测定,在KNO3中的离子强度为0.10 mol dm(-3)。单核化质子物种的log K值表明氨丙基臂连续去质子化,表明来自大环的氮供体原子是第一个金属中心的首选配位环境,而来自侧链的胺则是第二个中心的胺。在pH 4.0-4.5的2:1 Fe:L-1比例溶液中,双核络合物的形成量约为金属离子总量的85%。双核水解物质去质子化的log K值与直接结合到金属中心的两个水分子的存在一致。 2:1 Fe3 +:L-1比样品的紫外-可见光和红外光谱数据证实了双核和羟基双核物种的存在。这些溶液的EPR光谱由具有不同菱形E / D畸变的铁(III)物种的两个高自旋d(5)状态的平衡来解释。电化学研究还确定了单核和双核复合物的形成,显示出不可逆的氧化还原行为。双核络合物上的两个金属中心仅具有弱相互作用。 (C)2008 Elsevier Ltd.保留所有权利。

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