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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Development of a novel electrochemical cell for slab optical waveguide spectroscopy for in situ observation of methylene blue and anions on an electrode/electrolyte interface
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Development of a novel electrochemical cell for slab optical waveguide spectroscopy for in situ observation of methylene blue and anions on an electrode/electrolyte interface

机译:开发用于平板光波导光谱的新型电化学电池,用于在电极/电解质界面上原位观察亚甲基蓝和阴离子

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A new spectroelectrochemical cell for slab optical waveguide (SOWG) spectroscopy was developed in order to observe in situ an electrode/electrolyte interface for bulk electrolysis. The new SOWG spectroelectrochemical cell has been evaluated by simultaneous electrochemical-absorption experiments of methylene blue (MB) using cyclic voltammetry (CV) and SOWG spectrometry. CV was performed in the SOWG spectroelectrochemical cell using indium tin oxide (ITO) coated,lass as the working electrode, platinum wire as the counter electrode and a silver/silver chloride electrode (Ag/AgCl) as the reference electrode. Based on the CV and SOWG spectrometric data, it was found that the SOWG spectra showed the NIB spectra on the electrode surface selectively and that SOWG with the cell would be useful as a tool for in situ study of an electrode/electrolyte interface. Using this cell, the effects of the supporting electrolytes, NaNO3, KNO3, CH3COONa, and CH3COOK on the absorbance of MB were examined at the potential of +0.8 V versus Ag/AgCl. The decrease in MB absorbance by nitrate ions was greater than that of acetate ions. Therefore the competitive adsorption of nitrate ions was stronger than that of acetate ions. Thus, the decrease in absorbance of MB in the presence of anions demonstrates the competitive adsorption of anions. These results show that the extent of specific adsorption of electrolytes was observed by measuring the SOWG absorbance intensity of MB. (c) 2004 Elsevier B.V. All rights reserved.
机译:为了现场观察用于本体电解的电极/电解质界面,开发了一种用于平板光波导(SOWG)光谱的新型光谱电化学电池。通过同时使用循环伏安法(CV)和SOWG光谱法对亚甲基蓝(MB)进行电化学吸收实验,对新型SOWG光谱电化学电池进行了评估。 CV在SOWG光谱电化学电池中以涂有铟锡氧化物(ITO),玻璃作为工作电极,铂丝作为对电极以及银/氯化银电极(Ag / AgCl)作为参比电极进行。根据CV和SOWG光谱数据,发现SOWG光谱选择性地显示了电极表面的NIB光谱,并且带有电池的SOWG可用作电极/电解质界面原位研究的工具。使用该电池,在相对于Ag / AgCl的电位为+0.8 V的情况下,检查了支持电解质NaNO3,KNO3,CH3COONa和CH3COOK对MB吸光度的影响。硝酸根离子的MB吸光度下降幅度大于乙酸根离子。因此,硝酸根离子的竞争性吸附作用强于乙酸根离子。因此,在存在阴离子的情况下,MB的吸光度降低表明了阴离子的竞争性吸附。这些结果表明,通过测量MB的SOWG吸收强度,观察到电解质的特异性吸附程度。 (c)2004 Elsevier B.V.保留所有权利。

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