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The electrocatalytic properties of the oxides of noble metals in the electrooxidation of methanol and formic acid

机译:贵金属氧化物在甲醇和甲酸电氧化中的电催化性能

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The electrooxidation of 0.25 M methanol as well as of 0.25 M formic acid was examined on oxides formed on the Au(111) electrode surface in 0.5 M H_2SO_4 and 0.5 M NaHCO_3 at a sweep rate of 0.5 mV/s. In the case of methanol, the Au(111) surface in 0.5 M H_2SO_4 must be covered by oxides in order to catalyse its oxidation significantly. The current of formic acid oxidation also appears in the potential region before the oxide formation, but the catalytic activity is apparently deeper in the potential region of oxide formation. In 0.5 M NaHCO_3 the inhibition of methanol oxidation and the apparent catalytic activity of Au oxides in the case of formic acid oxidation are observed. The methanol electrooxidation on polycrystalline silver electrode was observed only in the potential region where the surface was covered by oxides in 0.1 M NaOH and at a sweep rate of 0.1 mV/s. This reaction was used to measure the concentration of methanol in the methanol-formaldehyde mixture in the same electrolyte.
机译:在0.5 m H_2SO_4和0.5 M NaHCO_3中以0.5 mV / s的扫描速率检查了在Au(111)电极表面上形成的氧化物上0.25 M甲醇以及0.25 M甲酸的电氧化。在甲醇的情况下,0.5 M H_2SO_4中的Au(111)表面必须被氧化物覆盖,以便显着催化其氧化。甲酸氧化的电流也出现在氧化物形成之前的电位区域中,但是催化活性显然在氧化物形成的电位区域中更深。在0.5 M NaHCO_3中,观察到甲酸氧化情况下甲醇氧化的抑制作用和金氧化物的表观催化活性。仅在表面被0.1 M NaOH中的氧化物覆盖且扫描速率为0.1 mV / s的电位区域中,才能观察到多晶银电极上的甲醇电氧化。该反应用于测量同一电解液中甲醇-甲醛混合物中甲醇的浓度。

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