Dept of Chemistry, FMKMC College, Madikeri, Mangalore University Constituent College, Karnataka, India.
J Food Drug Anal. 2018 Jan;26(1):292-299. doi: 10.1016/j.jfda.2017.05.002. Epub 2017 May 31.
The electrochemical behavior of indigo carmine (IC) at poly (glycine) modified carbon paste electrode (PGMCPE) was investigated by cyclic and differential pulse voltammetry. The oxidation peak of IC was observed in phosphate buffer of pH 6.5. The influence of different pH, scan rate, and concentration were analyzed. The probable reaction mechanism involved in the oxidation of IC was also proposed. Results showed that PGMCPE a remarkable electrocatalytic activity for the oxidation of IC under optimal conditions. The electrocatalytic response of the sensor was proportional to the IC concentration in the range of (2 × 10-1 × 10 M) and (1.5 × 10-6 × 10 M) with a limit of detection 11 × 10 M and limit of quantification 3.6 × 10 M. The modified electrode demonstrated many advantages such as simple preparation, high sensitivity, low detection of limit, excellent catalytic activity, short response time, and remarkable antifouling property toward IC and its oxidation product.
聚甘氨酸修饰碳糊电极上靛胭脂的电化学行为通过循环伏安法和差分脉冲伏安法进行了研究。在 pH 值为 6.5 的磷酸盐缓冲液中观察到了 IC 的氧化峰。分析了不同 pH 值、扫描速率和浓度的影响。还提出了 IC 氧化过程中可能涉及的反应机制。结果表明,在最佳条件下,PGMCPE 对 IC 的氧化具有显著的电催化活性。在(2×10-1×10 M)和(1.5×10-6×10 M)范围内,传感器的电催化响应与 IC 浓度呈正比,检测限为 11×10 M,定量限为 3.6×10 M。修饰电极具有制备简单、灵敏度高、检测限低、催化活性好、响应时间短、对 IC 及其氧化产物具有良好的抗污染性等优点。