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pH-Potentiometric Investigation towards Chelating Tendencies of p-Hydroquinone and Phenol Iminodiacetate Copper(II) Complexes

机译:对苯二酚和亚氨基二乙酸苯铜(II)配合物螯合倾向的pH电位法研究

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摘要

Copper ions in the active sites of several proteins/enzymes interact with phenols and quinones, and this interaction is associated to the reactivity of the enzymes. In this study the speciation of the Cu2+ with iminodiacetic phenolate/hydroquinonate ligands has been examined by pH-potentiometry. The results reveal that the iminodiacetic phenol ligand forms mononuclear complexes with Cu2+ at acidic and alkaline pHs, and a binuclear Ophenolate-bridged complex at pH range from 7 to 8.5. The binucleating hydroquinone ligand forms only 2 : 1 metal to ligand complexes in solution. The pK values of the protonation of the phenolate oxygen of the two ligands are reduced about 2 units after complexation with the metal ion and are close to the pK values for the copper-interacting tyrosine phenol oxygen in copper enzymes.
机译:几种蛋白质/酶的活性位点中的铜离子与酚和醌相互作用,这种相互作用与酶的反应性有关。在这项研究中,通过pH电位法研究了亚氨基二乙酸酚盐/氢醌盐配体与Cu 2 + 的形态。结果表明,亚氨基二乙酸苯酚配体在酸性和碱性条件下与Cu 2 + 形成单核络合物,在pH值7至8.5范围内与双核酚酯桥接。双核对苯二酚配体在溶液中仅形成2:1的金属与配体配合物。与金属离子络合后,两个配体的酚氧的质子化的pK值降低了约2个单位,并且接近铜酶中与铜相互作用的酪氨酸酚氧的pK值。

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