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Simultaneous Determination of Hydroquinone and Catechol at Poly-histidine Film Modified Glassy Carbon Electrode

机译:多组氨酸膜改性玻碳电极同时测定氢醌和儿茶酚

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The poly-histidine (poly-HTD) film was prepared at glassy carbon electrode by electropolymerization, and its electrochemical behavior was investigated by cyclic voltammetry. Results show that the behavior of this poly-HTD film is in good agreement with quasi-reversible process characteristic. At low scan rates, the electronic transfer process of electrode reaction is controlled by surface process. At this poly-HTD film modified electrode, an excellent electrocatalytic ability towards the redox of hydroquinone(HQ) and catechol(CC) with decrease of the overpotential and improvement of the redox peak currents was found. Differential pulse voltammetry was used for the simultaneous determination of HQ and CC in their mixture, and the peak-to-peak separation ΔE_p for HQ and CC was 110 mV. Therefore, this polymer modified electrode can be used for the simultaneously selective determination of HQ and CC without interference with each other.
机译:通过电聚合在玻璃碳电极下制备多组织(聚氨酸)膜,通过环状伏安法研究其电化学行为。结果表明,该多HTD薄膜的行为与准可逆过程特征吻合良好。在低扫描速率下,电极反应的电子转移过程由表面过程控制。在该多HTD膜改性电极下,发现,发现,发现朝向氧化铈(HQ)和儿茶酚(CC)氧化还原的优异电催化能力,并发现了氧化还原峰值电流的降低。差分脉冲伏安法用于同时测定它们的混合物中的HQ和Cc,HQ和CC的峰峰分离Δe_p为110mV。因此,该聚合物改性电极可用于同时选择性地测定HQ和CC而不会彼此干涉。

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