Cerium-Dioxide-Nanoparticle-Modified Electrode for Voltammetric Determination of Propyl Gallate

循环伏安法 电化学 电极 玻璃碳 没食子酸 无机化学 化学 微分脉冲伏安法 电子转移 没食子酸丙酯 介电谱 检出限 碳纤维 伏安法 化学修饰电极 工作电极 核化学 电催化剂 溴化物 参比电极 氧化还原 材料科学 电合成
作者
G. K. Ziyatdinova,I. O. Grigoreva
出处
期刊:Russian Journal of Electrochemistry [Pleiades Publishing]
卷期号:61 (10): 720-731
标识
DOI:10.1134/s1023193525600828
摘要

Abstract A novel glassy carbon electrode modified with cerium dioxide (CeO2) nanoparticles and hexadecylpyridinium bromide is developed for the voltammetric determination of propyl gallate. The hexadecylpyridinium acts as a dispersing agent that stabilized the nanomaterial and as a co-modifier of the electrode surface. Modification of the glassy carbon electrode lowered the propyl gallate oxidation peak potential by 20 mV and provided a 2.6-fold increase in the oxidation peak current. The bare and modified glassy carbon electrodes are characterized by scanning electron microscopy, cyclic voltammetry, chronoamperometry, and electrochemical impedance spectroscopy. A statistically significant increase in the effective surface area of the modified electrode is shown (32.4 ± 0.5 mm2 as compared with 8.9 ± 0.3 mm2 for the bare glassy carbon electrode). The electrochemical impedance data indicate a 2100-fold decrease in the charge transfer resistance as compared to the bare glassy carbon electrode, which confirms the increase in the electron transfer rate (ket = 1.13 × 10–5 and 2.42 × 10–2 cm/s for glassy carbon electrode and CeO2-nanoparticles/glassy carbon electrode, respectively). Propyl gallate electrooxidation occurred irreversibly with the participation of protons and is controlled by surface processes. The parameters of electrooxidation are calculated and a scheme of the electrode reaction is suggested. The linear dynamic ranges of propyl gallate in the differential pulse voltammetry are 0.10–2.5 and 2.5–50 μM, with a detection limit of 0.022 μM. The selectivity of the electrode response to propyl gallate in the presence of inorganic ions and carbohydrates is demonstrated. Since the propyl gallate is used to prevent oxidation of vegetable oils, α-tocopherol and other antioxidant additives (tert-butylhydroxyanisole and tert-butylhydroxytoluene) used together with propyl gallate are considered as potential interfering agents. A 5-fold excess of α-tocopherol, a 10-fold excess of tert-butylhydroxyanisole and equimolar amounts of tert-butylhydroxytoluene do not interfere with the propyl gallate determination. The method is tested on extracts of sunflower and sesame oils.

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