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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Biologically active thiosemicarbazone Fe chelators and their reactions with ferrioxamine B and ferric EDTA; A kinetic study
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Biologically active thiosemicarbazone Fe chelators and their reactions with ferrioxamine B and ferric EDTA; A kinetic study

机译:具有生物活性的硫半脲铁螯合剂及其与亚铁胺B和EDTA铁的反应;动力学研究

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The Fe ~(III) abstraction from Fe ~(III)/DFO and Fe ~(III)/EDTA complex systems by thiosemicarbazone ligands derived from 2-acetylpyridine has been studied from a kinetico-mechanistic perspective at relevant pH conditions and at varying temperatures and buffer solutions. The reactions have been found to be extremely dependent on the dominant E/Z isomeric form of the TSC ligands present in the reaction medium. Consequently the isomerisation processes occurring on the free ligands have also been monitored under equivalent conditions. The isomerisation process is found to be acid dependent, despite the absence of protonation under the conditions used, and presumably proceeds via an azo-type tautomer of the ligand. In all cases the existence of outer-sphere interaction processes has been established, both promoting the reactions and producing dead-end complexes. The better oriented forms of the ligands (EZ thiolate) have been found to react faster with the [Fe(HDFO)] ~+ complex, although for mono-N ~4 substituted thiosemicarbazones the process is retarded by the formation of a dead-end outer-sphere complex. A comparison with the abstraction of Fe ~(III) from [Fe(EDTA)(H _2O)] ~- has also been conducted with significant differences in the kinetic features that implicate keystone outer-sphere interactions which dominate reactivity, even with isomeric forms that are not the best suited for direct complexation.
机译:从动力学机理的角度研究了在相关pH条件和不同温度下从2-乙酰基吡啶衍生的硫半脲配体从Fe〜(III)/ DFO和Fe〜(III)/ EDTA络合物体系中提取Fe〜(III)的方法。和缓冲溶液。已经发现反应极其依赖于反应介质中存在的TSC配体的主要E / Z异构形式。因此,还已经在等效条件下监测了在游离配体上发生的异构化过程。尽管在使用的条件下不存在质子化,但是发现异构化过程是酸依赖性的,并且推测是通过配体的偶氮型互变异构体进行的。在所有情况下,都已建立了外层相互作用过程的存在,既促进了反应又产生了末端复合物。已经发现,配体的较好取向形式(EZ硫醇盐)与[Fe(HDFO)]〜+络合物反应更快,尽管对于单N〜4取代的硫代半碳氮酮,该过程由于形成死角而受到阻碍外圈复合体。还进行了与从[Fe(EDTA)(H _2O)]〜-中提取Fe〜(III)的比较,发现动力学特征存在显着差异,这暗示了主导反应性的梯形外球相互作用,即使是异构形式也是如此。并不是最适合直接络合的。

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