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Development of cobalt oxide film modified electrode decorated with platinum nanoparticles as a biosensing platform for phenol

机译:用铂纳米粒子装饰的氧化钴膜改性电极作为苯酚的生物传感平台

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ABSTRACT Recently, cobalt oxides attract a special attention mainly due to their excellent electrocatalytic activity towards various compounds. This study concerns with electrochemical preparation of cobalt oxide modified glassy carbon electrodes decorated with platinum nanoparticle in the pursuit of its catalytic applications. The parameters affecting the deposition conditions have been evaluated by monitoring oxygen reduction reaction (ORR) in pH 5.0 acetate buffer. Under optimal conditions, the composite film electrode surface was utilised as a platform forbiosensor development. Polyphenol oxidase enzyme was immobilised onto the electrode surface for phenol detection, and the influence of solution and operational parameters have been investigated. The medium pH and the enzyme amount have been optimised as pH 7.0 and 0.3 mg, respectively. Chronoamperograms were recorded for phenol detection in micromolar levels.
机译:摘要最近,钴氧化物主要引起特别注意,主要是朝向各种化合物的优异的电催化活性。该研究涉及用铂纳米粒子装饰的钴氧化物改性玻璃电极的电化学制备在追求其催化应用中。通过监测pH 5.0乙酸盐缓冲液中的氧还原反应(ORR)来评估影响沉积条件的参数。在最佳条件下,复合薄膜电极表面被用作平台增强体传感器的开发。将多酚氧化酶固定在电极表面上进行苯酚检测,并研究了溶液和操作参数的影响。培养基pH和酶量分别优化为pH 7.0和0.3mg。记录苯酚水平苯酚检测的计时蛋白照片。

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