Department of Chemical Engineering, Laboratory of Nanotechnology, Quchan University of Advanced Technology, Quchan, Iran.
Department of Chemistry, College of Science, Semnan University, Semnan, Iran.
J Food Drug Anal. 2017 Oct;25(4):1000-1007. doi: 10.1016/j.jfda.2017.01.003. Epub 2017 Feb 13.
The electrooxidation of N-acetylcysteine (N-AC) was studied by a novel Ni(II) complex modified ZrO nanoparticle carbon paste electrode [Ni(II)/ZrO/NPs/CPE] using voltammetric methods. The results showed that Ni(II)/ZrO/NPs/CPE had high electrocatalytic activity for the electrooxidation of N-AC in aqueous buffer solution (pH = 7.0). The electrocatalytic oxidation peak currents increase linearly with N-AC concentrations over the concentration ranges of 0.05-600μM using square wave voltammetric methods. The detection limit for N-AC was equal to 0.009μM. The catalytic reaction rate constant, k, was calculated (7.01 × 10 M s) using the chronoamperometry method. Finally, Ni(II)/ZrO/NPs/CPE was also examined as an ultrasensitive electrochemical sensor for the determination of N-AC in real samples such as tablet and urine.
采用一种新型的 Ni(II) 配合物修饰的氧化锆纳米粒子碳糊电极[Ni(II)/ZrO/NPs/CPE],通过伏安法研究了 N-乙酰半胱氨酸(N-AC)的电化学氧化。结果表明,Ni(II)/ZrO/NPs/CPE 对水溶液缓冲液(pH=7.0)中 N-AC 的电化学氧化具有高电催化活性。使用方波伏安法,在 0.05-600μM 的浓度范围内,N-AC 的电催化氧化峰电流随其浓度呈线性增加。N-AC 的检测限等于 0.009μM。通过计时安培法计算出催化反应速率常数 k(7.01×10 M s)。最后,还将 Ni(II)/ZrO/NPs/CPE 用作测定片剂和尿液等实际样品中 N-AC 的超灵敏电化学传感器。