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A study of the electrocatalytic oxidation of aspirin on a nickel hydroxide-modified nickel electrode

机译:氢氧化镍修饰镍电极上阿司匹林的电催化氧化研究

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The electrocatalytic oxidation of aspirin has been investigated on a nickel oxide-modified nickel electrode in alkaline solution. The process of oxidation and its kinetics have been investigated by using cyclic voltammetry, chronoamperometry, and electrochemical impedance spectroscopy techniques and also steady-state polarization measurements. Voltammetric studies have indicated that in the presence of aspirin, the anodic peak current of low-valence nickel species increases, followed by a decrease in the corresponding cathodic current. This indicates that aspirin was oxidized on the redox mediator immobilized on the electrode surface via an electrocatalytic mechanism. The rate constant of the catalytic oxidation of aspirin and the electron transfer coefficient have been found to be 1.15 x 10(5) cm(3) mol(-1) s(-1) and 0.49, respectively. Impedance measurements show that aspirin is diffused into the bulk of the modifier film, and the oxidation process of aspirin occurs in the bulk of nickel oxide film. It has been shown that by using this modified electrode, aspirin can be determined with a detection limit of 4.8 x 10(-5) and successfully applied for determination of aspirin in tablet.
机译:在碱性溶液中在氧化镍修饰的镍电极上研究了阿司匹林的电催化氧化。通过使用循环伏安法,计时电流法和电化学阻抗谱技术以及稳态极化测量,研究了氧化过程及其动力学。伏安研究表明,在存在阿司匹林的情况下,低价镍物质的阳极峰值电流增加,随后相应的阴极电流减少。这表明阿司匹林通过电催化机理在固定在电极表面的氧化还原介体上被氧化。阿司匹林的催化氧化速率常数和电子传递系数已分别为1.15 x 10(5)cm(3)mol(-1)s(-1)和0.49。阻抗测量表明,阿司匹林扩散到改性剂膜的大部分中,并且阿司匹林的氧化过程发生在氧化镍膜的大部分中。已经表明,通过使用这种修饰的电极,阿司匹林可以以4.8 x 10(-5)的检出限测定,并成功地应用于片剂中阿司匹林的测定。

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