李小琴, 黄卫红, 沈佳乐, 王芳. 2021: 多酸修饰电极对深色果蔬中维生素C的测定. 南方农业学报, 52(10): 2842-2850. DOI: 10.3969/j.issn.2095-1191.2021.10.025
引用本文: 李小琴, 黄卫红, 沈佳乐, 王芳. 2021: 多酸修饰电极对深色果蔬中维生素C的测定. 南方农业学报, 52(10): 2842-2850. DOI: 10.3969/j.issn.2095-1191.2021.10.025
LI Xiao-qin, HUANG Wei-hong, SHEN Jia-le, WANG Fang. 2021: Determination of vitamin C in dark fruits and vegetables by polyacid modified electrode. Journal of Southern Agriculture, 52(10): 2842-2850. DOI: 10.3969/j.issn.2095-1191.2021.10.025
Citation: LI Xiao-qin, HUANG Wei-hong, SHEN Jia-le, WANG Fang. 2021: Determination of vitamin C in dark fruits and vegetables by polyacid modified electrode. Journal of Southern Agriculture, 52(10): 2842-2850. DOI: 10.3969/j.issn.2095-1191.2021.10.025

多酸修饰电极对深色果蔬中维生素C的测定

Determination of vitamin C in dark fruits and vegetables by polyacid modified electrode

  • 摘要: 【目的】制备磷钼酸复合膜修饰电极,并对其电化学性质和果蔬维生素C含量的测定进行相关探究,为深色果蔬中维生素C的测定提供理论依据。【方法】利用电化学沉积法在E=+0.26 V恒电位下制备磷钼酸复合膜修饰电极,并在不同条件下对其电化学性质进行检测,再以水果和蔬菜为研究对象,检验磷钼酸复合膜修饰电极对维生素C含量测定的效果。【结果】制备所得的磷钼酸具有稳定的Keggin结构;磷钼酸修饰后的电极在-0.4~+0.6 V内具备可逆的氧化还原峰;磷钼酸复合膜修饰电极的电催化能力与磷钼酸浓度呈正相关,且在高酸环境中电化学催化能力更强;该修饰电极对维生素C的氧化催化活性较明显,氧化催化活性随磷钼酸氧化程度和扫速的增加而提高,在连续增加维生素C浓度的过程中,修饰电极能快速响应维生素C,最短响应时间仅需3 s;以该电极为工作电极检测获得橙子、胡萝卜和青椒3种样品维生素C含量分别为45.32、71.16和96.99 mg/100 g,3次测定结果平均值的相对标准偏差(RSD)均未超过5.0%,且最低检测限为1.1×10-8 mol/L(S/N=3)。【结论】磷钼酸复合膜修饰电极的氧化催化活性良好,对深色果蔬维生素C的检测具有灵敏度高、检出限低和测定结果误差较小等特点。

     

    Abstract: 【Objective】Phosphomolybdic acid composite membrane modified electrode was prepared, and its electrochemical properties and the determination of vitamin C content in fruits and vegetables were explored, so as to provide a theoretical basis for the determination of vitamin C in dark fruits and vegetables.【Method】The phosphomolybdic acid composite film modified electrode was prepared by electrochemical deposition at E=+0.26 V constant potential, and its electrochemical properties were tested under different conditions. Finally, fruits and vegetables were used as the research object to measure the effect of phosphomolybdic acid composite film modified electrode on the determination of vitamin C content.【Result】The prepared phosphomolybdic acid had a stable Keggin structure, and the phosphomolybdic acid modified electrode had a reversible redox peak within -0.4 to +0.6 V. The electrocatalytic ability of the phosphomolybdic acid composite film modified electrode was positively correlated with the phosphomolybdic acid concentration, and the electrochemical catalytic activity was better in a high acid environment. The modified electrode had obvious catalytic activity for the oxidation of vitamin C, and the catalytic activity of oxidation increased with the increase of the oxidation degree and sweep rate of phosphomolybdic acid. During the continuous increase of vitamin C, the modified electrode could quickly respond to vitamin C, and the shortest response time was only 3 s. Using this electrode as a working electrode, the vitamin C contents of three samples of orange, carrot and green pepper were 45.32, 71.16 and 96.99 mg/100 g, the relative standard deviation(RSD) of the average of the three determination results did not exceed 5.0%, and the minimum detection limit was 1.1×10-8 mol/L(S/N=3).【Conclusion】The phosphomolybdic acid composite film modified electrode has good oxidation catalytic activity, and has the characteristics of high sensitivity, low detection limit and small error in measurement results for the detection of vitamin C in dark fruits and vegetables.

     

/

返回文章
返回