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聚天冬氨酸修饰玻碳电极伏安法检测阿魏酸
引用本文:王晓岗,王瑶,樊雅娟,李静.聚天冬氨酸修饰玻碳电极伏安法检测阿魏酸[J].同济大学学报(自然科学版),2011,39(7):1084-1087.
作者姓名:王晓岗  王瑶  樊雅娟  李静
作者单位:1. 同济大学化学系,上海,200092
2. 盐城市第三人民医院神经内科,江苏盐城,224000
3. 同济大学数学系,上海,200092
基金项目:上海市教委各类项目(09ZR1434100)
摘    要:通过在水溶液中直接电聚合的方法制备了聚天冬氨酸修饰玻碳电极.在pH为4.5,0.1 mol.L-1HAc-NaAc缓冲溶液中,修饰电极对阿魏酸表现出良好的吸附能力,显著地提高了阿魏酸的电信号强度.探讨了聚天冬氨酸修饰玻碳电极的作用机理,建立了阿魏酸的快速检测方法.在浓度为9.1×10-7~3.0×10-3mol.L-1范围内,阿魏酸的微分脉冲氧化峰电流与其浓度呈线性关系,检出限为3.1×10-7mol.L-1.此方法用于中成药逍遥丸中痕量阿魏酸的检测,回收率为97.9%~102.2%.

关 键 词:阿魏酸  聚天冬氨酸修饰电极  电化学检测
收稿时间:3/31/2010 7:32:39 PM
修稿时间:5/14/2011 8:38:21 PM

Voltammetric Determination of Ferulic Acid Using a GC Electrode Modified with Poly aspartic Acid Film
WANG Xiaogang,WANG Yao,FAN Yajuan and LI Jing.Voltammetric Determination of Ferulic Acid Using a GC Electrode Modified with Poly aspartic Acid Film[J].Journal of Tongji University(Natural Science),2011,39(7):1084-1087.
Authors:WANG Xiaogang  WANG Yao  FAN Yajuan and LI Jing
Institution:Chemistry department of Tongji University,Department of Neurology, YanCheng 3rd People Hospital, Jiangsu YanCheng, 224000,Department of Maths, Tongji University,Department of Chemistry, Tongji University
Abstract:A novel electrochemical sensor has been prepared by direct electro-polymerization of DL-aspartic acid on the surface of glassy carbon electrode in aqueous media. In pH 4.5,0.1 molּL-1 HAc-NaAc buffer solution, the film modified electrode exhibited excellent adsorption capacity to ferulic acid and improved the electrochemical responses significantly. The action mechanism of modified electrode was preliminarily explored, and a fast analytical method for ferulic acid was established. In the range of 9.1×10-7 to 3.0×10-3 molּL-1, the differential pulse voltammetric peak current has a linear relationship to the concentration, and the detection limit was estimated to be 3.1×10-7 molּL-1. This method has been adopted to detect trace amount of ferulic acid in Chinese patent medicine of Xiao Yao pill, and the recovery was from 97.9% to 102.2%.
Keywords:ferulic acid  poly-aspartic acid modified electrode  electrochemical determination
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