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 >IN SITU SCANNING TUNNELLING MICROSCOPY IMAGE OF A HIGHLY ORIENTED PYROLYTIC GRAPHITE ELECTRODE MODIFIED WITH POTASSIUM BIS(11-MOLYBDOSILICATO) DYSPROSATE(III) IN SODIUM SULPHATE SOLUTION
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IN SITU SCANNING TUNNELLING MICROSCOPY IMAGE OF A HIGHLY ORIENTED PYROLYTIC GRAPHITE ELECTRODE MODIFIED WITH POTASSIUM BIS(11-MOLYBDOSILICATO) DYSPROSATE(III) IN SODIUM SULPHATE SOLUTION

机译:硫酸钾溶液中双(11-钼二硅酸钾)次磷酸钾(III)修饰的高定向热解石墨电极的原位扫描隧道显微镜图像

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The variation in molecule adsorption mode on pretreated highly oriented pyrolytic graphite electrodes, modified with the title complex K10H3[Dy(SiMo11O39)(2)] by cyclic voltammetry in the title complex solution, was observed in situ by electrochemical scanning tunnelling microscopy (ECSTM) with molecular resolution in sodium sulphate solution. According to the ECSTM images and the known molecular structure we conclude that the adsorption mode of the title complex modified electrode changed during potential cycling from ''vertical'' to ''inclined'' and then ''horizontal'' or ''flat'' mode, i.e. the title complex adsorbed on the surface of electrode by one ligand of the complex at first, then began to incline and was finally adsorbed by two ligands of the complex. This result indicates that the adsorption mode on the modified electrode surface changed during potential cycling in the sulphate solution and a much more stable molecular layer was formed. The change in adlattice of adsorbates on the modified electrode surface from hexagonal to rectangular was also observed by ECSTM. A plausible model was given to explain this process. [References: 23]
机译:通过电化学扫描隧道显微镜(ECSTM)在原位观察了在标题复合物溶液中通过循环伏安法修饰的标题为复合物K10H3 [Dy(SiMo11O39)(2)]修饰的预处理的高取向热解石墨电极上分子吸附模式的变化在硫酸钠溶液中具有分子分辨率。根据ECSTM图像和已知的分子结构,我们得出结论,标题复合物修饰电极的吸附模式在电势循环期间从“垂直”变为“倾斜”,然后是“水平”或“平坦”。模式,即标题复合物首先被复合物的一个配体吸附在电极表面上,然后开始倾斜,最后被复合物的两个配体吸附。该结果表明,在硫酸盐溶液中的电势循环期间,修饰电极表面上的吸附模式改变,并且形成了更加稳定的分子层。通过ECSTM也观察到改性电极表面上的吸附物的沉积度从六边形变为矩形。给出了一个合理的模型来解释这个过程。 [参考:23]

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