Simultaneous Voltammetric Determination of Isoniazid and Ascorbic Acid Based on Graphene/Gold Nanocomposites Modified Electrode
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Simultaneous Voltammetric Determination of Isoniazid and Ascorbic Acid Based on Graphene/Gold Nanocomposites Modified Electrode
Vol. 33, Issue 4, Pages: 403-408(2014)
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河南工业大学化学化工学院
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Simultaneous Voltammetric Determination of Isoniazid and Ascorbic Acid Based on Graphene/Gold Nanocomposites Modified Electrode. [J]. 33(4):403-408(2014)
DOI:
Simultaneous Voltammetric Determination of Isoniazid and Ascorbic Acid Based on Graphene/Gold Nanocomposites Modified Electrode. [J]. 33(4):403-408(2014)DOI:
Simultaneous Voltammetric Determination of Isoniazid and Ascorbic Acid Based on Graphene/Gold Nanocomposites Modified Electrode
A glassy carbon electrode modified with GR/Au nanocomposites was prepared for the simultaneous determination of isoniazid(INZ) and ascorbic acid(AA).In 0.1 mol?L-1 PBS(pH 3.5) buffer solution,the electrochemical behaviors of INZ and AA were investigated by cyclic voltametrmy(CV).The results indicated that the anodic peak currents of both INZ and AA showed linear relationships with the square root of scan rate over a wide range of 50-300 mV?s-1.Furthermore,the nanocomposites modified electrode showed an efficient catalytic role in the electro-oxidation of INZ and AA,leading to a remarkable peak resolution(ΔV=170 mV) between the two compounds.Under the optimal experimental conditions,the anodic peak currents were linear over ranges of 3.0×10-6-1.5×10-4 mol?L-1 for INZ and 3.0×10-5-1.0×10-3 mol?L-1 for AA,with detection limits of 8.0×10-7 mol?L-1 and 6.0×10-6 mol?L-1,respectively.The proposed method was successfully applied in the determination of INZ and AA in commercial drugs.
Preparation of N-doped Ordered Mesoporous Carbon Modified Electrode by Hard Template Method for Detection of Nefopam Hydrochloride
Study on Colorimetric Detection of Ascorbic Acid in Juice Based on Ce-BDC Oxidase like Activity
Electrochemical Behaviour of Baicalin at Nano MnO2-Ionic Liquid Modified Electrode and Its Electroanalytical Application
Electrochemical Behavior of Dopamine at Poly(Methylene Blue)/Graphene Modified Glassy Carbon Electrode
Electrochemical Behaviors of p-Aminophenol at Graphene-Ionic Liquid Composite Modified Electrode
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