首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Electron transfer and binding affinities in an electrochemically controlled ligand transfer system containing zinc porphyrin and a meso-phenylenediamine substituent
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Electron transfer and binding affinities in an electrochemically controlled ligand transfer system containing zinc porphyrin and a meso-phenylenediamine substituent

机译:含锌卟啉和中亚苯二胺取代基的电化学控制配体转移系统中的电子转移和结合亲和力

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摘要

Investigations on the transfer of the ligand, imidazole (HIm), between two covalently linked redox centres - zinc porphyrin and phenylenediamine (PD) - and the influence of the length of the linker are reported. Since the binding affinity of the ligand with zinc porphyrin is different from that of the ligand with the phenylenediamine moiety, the transfer of the ligand could be electrochemically controlled by adjusting the oxidation potentials. Changes in cyclic voltammograms and absorption spectra of the complexes revealed the site of ligand binding in the various oxidation states of the modified zinc porphyrins. Binding constants of the modified zinc porphyrins in various oxidation states were also determined by photometric titration with the ligand and digital simulations. Evidence for the delocalization of the electron from the zinc porphyrin to the phenylenediamine moiety and the influence of the delocalization on them were obtained from EPR studies.
机译:报道了对两个共价连接的氧化还原中心(卟啉锌和苯二胺(PD))之间的配体咪唑(HIm)转移的研究,以及对连接子长度的影响。由于配体与卟啉锌的结合亲和力与具有苯二胺部分的配体的结合亲和力不同,因此可以通过调节氧化电位来电化学控制配体的转移。配合物的循环伏安图和吸收光谱的变化揭示了改性锌卟啉在各种氧化态下的配体结合位点。还通过配体的光度滴定和数字模拟确定了在各种氧化态下改性锌卟啉的结合常数。从EPR研究获得了电子从卟啉锌离域到苯二胺部分的证据以及离域化对它们的影响。

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