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首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >SPECTROELECTROCHEMICAL CHARACTERIZATION OF ULTRA-THIN FILMS FORMED BY ELECTROPOLYMERIZATION OF PHENOTHIAZINE DERIVATIVES ON TRANSPARENT GOLD ELECTRODES
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SPECTROELECTROCHEMICAL CHARACTERIZATION OF ULTRA-THIN FILMS FORMED BY ELECTROPOLYMERIZATION OF PHENOTHIAZINE DERIVATIVES ON TRANSPARENT GOLD ELECTRODES

机译:透明金电极上苯并噻嗪衍生物的电聚合形成的超薄膜的光谱电化学表征

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Transparent gold electrodes covered with an ultra-thin polyphenothiazine film layer have been obtained by electropolymerization of the monomeric parent compounds, Methylene Blue, Methylene Green and Azur A, under alkaline pH conditions. The electrochemical behaviour of the polymers immobilized on the electrode surface has been characterized by UV-visible difference spectroelectrochemistry. A study of the dependence of the oxidation state of the surface redox species with the applied potential of any of the different polymer layers immobilized on the electrode surface showed one rather irreversible redox process, at potentials shifted towards 100-120 mV more positive values than those obtained for the monomer in solution. The spectroelectrochemical curves, obtained from the absorbance changes observed at different applied potentials, showed a hysteresis in the oxidation process, as well as the loss of some electroactive material from the electrode surface during the reduction process for all polymers studied. For poly-Methylene Blue, a shift of the redox potential towards more negative values coupled with an increase in the irreversibility of the redox process at increasingly higher pH values has been observed. The simultaneously obtained UV-visible difference spectra of the different films resembled those of the solubilized monomers. However, the spectra of the polymers showed a shift of the main visible maximum towards 50-80 nm shorter wavelengths, depending on the monomer studied. [References: 36]
机译:通过在碱性pH条件下将单体母体化合物亚甲基蓝,亚甲基绿和Azur A电聚合,获得了覆盖有超薄聚吩噻嗪薄膜层的透明金电极。固定在电极表面的聚合物的电化学行为已通过紫外-可见差光谱电化学进行了表征。对表面氧化还原物质的氧化态与固定在电极表面的任何不同聚合物层的施加电势的依赖关系的研究表明,一个相当不可逆的氧化还原过程,电势比那些正向电势高100-120 mV获得溶液中的单体。从在不同施加电势下观察到的吸光度变化获得的光谱电化学曲线显示,在氧化过程中存在滞后现象,并且在所有研究的聚合物的还原过程中,某些电活性材料从电极表面流失。对于聚亚甲基蓝,已经观察到在越来越高的pH值下,氧化还原电势向更多的负值转移,同时氧化还原过程的不可逆性增加。同时获得的不同膜的UV-可见差光谱类似于增溶单体的光谱。然而,取决于所研究的单体,聚合物的光谱显示出主要可见最大值向短波长50-80nm的偏移。 [参考:36]

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