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Application of Carbon-Microsphere-Modified Electrodes for Electrochemistry of Hemoglobin and Electrocatalytic Sensing of Trichloroacetic Acid

机译:碳微球修饰电极在血红蛋白电化学和三氯乙酸电催化传感中的应用

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摘要

By using the hydrothermal method, carbon microspheres (CMS) were fabricated and used for electrode modification. The characteristics of CMS were investigated using various techniques. The biocompatible sensing platform was built by immobilizing hemoglobin (Hb) on the micrometer-sized CMS-modified electrode with a layer of chitosan membrane. On the cyclic voltammogram, a couple of quasi-reversible cathodic and anodic peaks appeared, showing that direct electrochemistry of Hb with the working electrode was achieved. The catalytic reduction peak currents of the bioelectrode to trichloroacetic acid was established in the linear range of 2.0~70.0 mmol·L−1 accompanied by a detection limit of 0.30 mmol·L−1 (3σ). The modified electrode displayed favorable sensitivity, good reproducibility and stability, which suggests that CMS is promising for fabricating third-generation bioelectrochemical sensors.
机译:通过水热法,制备了碳微球(CMS)并将其用于电极修饰。使用各种技术研究了CMS的特性。通过将血红蛋白(Hb)固定在具有壳聚糖膜层的微米级CMS修饰电极上,从而建立了生物相容性传感平台。在循环伏安图上,出现了两个准可逆的阴极和阳极峰,表明实现了Hb与工作电极的直接电化学。生物电极对三氯乙酸的催化还原峰电流建立在2.0〜70.0mmol·L -1 的线性范围内,检出限为0.30mmol·L -1 (3σ)。修饰电极显示出良好的灵敏度,良好的可重复性和稳定性,这表明CMS有望用于制造第三代生物电化学传感器。

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