周忠亮, 康天放, 鲁理平, 周海青. 基于纳米钯和Nafion膜修饰玻碳电极的甲醛传感器研究[J]. 北京工业大学学报, 2011, 37(7): 1073-1078.
    引用本文: 周忠亮, 康天放, 鲁理平, 周海青. 基于纳米钯和Nafion膜修饰玻碳电极的甲醛传感器研究[J]. 北京工业大学学报, 2011, 37(7): 1073-1078.
    ZHOU Zhong-liang, KANG Tian-fang, LU Li-ping, ZHOU Hai-qing. Electrochemical Sensor for the Detection of Formaldehyde Based on the Glassy Carbon Electrode Modified With Nafion Film and Nano-Pd Particles[J]. Journal of Beijing University of Technology, 2011, 37(7): 1073-1078.
    Citation: ZHOU Zhong-liang, KANG Tian-fang, LU Li-ping, ZHOU Hai-qing. Electrochemical Sensor for the Detection of Formaldehyde Based on the Glassy Carbon Electrode Modified With Nafion Film and Nano-Pd Particles[J]. Journal of Beijing University of Technology, 2011, 37(7): 1073-1078.

    基于纳米钯和Nafion膜修饰玻碳电极的甲醛传感器研究

    Electrochemical Sensor for the Detection of Formaldehyde Based on the Glassy Carbon Electrode Modified With Nafion Film and Nano-Pd Particles

    • 摘要: 采用循环伏安法制备了钯纳米粒子-Nafion修饰玻碳电极(Pd/Nf/GCE)的甲醛电化学传感器,并采用循环伏安法(CV)和微分脉冲伏安法(DPV)研究了甲醛在该修饰电极上的电催化氧化作用.对修饰电极制备条件和实验条件进行了优化,在此基础上建立了一种测定甲醛的伏安分析方法.实验结果表明,甲醛在该传感器上的催化氧化作用显著;在0.1 mol/L NaOH溶液中,甲醛的氧化峰电流与其浓度在5.0μmol/L~5.0 mmol/L呈良好的线性关系,线性回归方程为:ip=7.69+2.22×104c,相关系数γ=0.996 7,检测限为1.0μmol/L,具有良好的重现性和回收率.

       

      Abstract: A novel electrochemical sensor for the detection of formaldehyde is prepared based on electrodepositing palladium nanoparticles on the Nafion film coated glassy carbon electrode(Pd/Nf/GCE) through cyclic voltammetry(CV).Electrocatalytical behaviors of the modified electrode are investigated by cyclic voltammetry and differential pulse voltammetry(DPV).Experimental conditions are optimized and a voltammetric method for determining formaldehyde is developed.Experimental results show that the electrode displays a remarked electrocatalytic activity in alkaline solution and exhibits a linear response to formaldehyde in the range of 5.0 μmol/L~5.0 mmol/L.The linear regression equation is ip=7.69+2.22×104c with a correlation coefficient of 0.996 7 and the detection limit is estimated to be 1.0 μmol/L calculated from the signal-to-noise ratio of 3∶1.The presented methods of determining formaldehyde exhibit good reproducibility and recovery.

       

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