Detection of Hesperetin Using an Interconnected Porous Carbon Modified Electrode Based on Derivation of Potassium Sorbate
|更新时间:2023-04-18
|
Detection of Hesperetin Using an Interconnected Porous Carbon Modified Electrode Based on Derivation of Potassium Sorbate
Vol. 39, Issue 5, Pages: 612-618(2020)
作者机构:
1. 重庆医科大学实验动物中心
2. 湖北民族大学化学与环境工程学院
作者简介:
基金信息:
DOI:
CLC:
扫 描 看 全 文
Detection of Hesperetin Using an Interconnected Porous Carbon Modified Electrode Based on Derivation of Potassium Sorbate. [J]. 39(5):612-618(2020)
DOI:
Detection of Hesperetin Using an Interconnected Porous Carbon Modified Electrode Based on Derivation of Potassium Sorbate. [J]. 39(5):612-618(2020)DOI:
Detection of Hesperetin Using an Interconnected Porous Carbon Modified Electrode Based on Derivation of Potassium Sorbate
An electrochemical method was developed for the detection of hesperetin(HSP) using a three dimensional potassium sorbate derived interconnected porous carbon(PSIPC) modified electrode.The PSIPC material was synthesized by pyrolyzing method,using organic salt potassium sorbate(PS) as template via heating treatment in nitrogen atmosphere,and was characterized by scanning electron microscopy(SEM),transmission electron microscopy(TEM),X ray powder diffraction(XRD),X photoelectron spectroscopy(XPS),thermogravimetric analysis(TGA) and N2 adsorption and desorption tests.PSIPC-700,PSIPC-800 and PSIPC-900 obtained in different temperatures were directly dropped onto the surface of a glassy carbon electrode to obtain PSIPC modified electrodes(PSIPC-700/GCE,PSIPC-800/GCE and PSIPC-900/GCE).The electrochemical behaviors of HSP on PSIPC-900/GCE were investigated by cyclic voltammetry(CV) and differential pulse voltammetry(DPV).Under the optimized conditions,the linear range for HSP was in the range of 0.05-15.0 μmol/L.The limit of detection was as low as 0.021 μmol/L.With high sensitivity and wide detection range,this method could be applied in the detection of HSP in real samples.
Detection of 4-Iodophenoxyacetic Acid Using a Graphene-loaded Tin Dioxide Electrochemical Sensor
Preparation of a Novel Urchin-like Tungsten Copper Self-supporting Electrode for Enzymeless Glucose Sensing
Preparation and Application of a Chloramphenicol Electrochemical Sensor Based on Molecularly Imprinted Polymer
Preparation of Magnetic Porous Biochar Derived from Corn Silk and Its Extraction of Malachite Green in Seawater
Research Progress of Electrochemical Biosensor for Single Nucleotide Polymorphisms Detection
Related Author
No data
Related Institution
Laboratory of Chemistry of Xinjiang Specialty Medicinal and Edible Plant Resources, Kashgar University,Kashgar
Institute of Tea Research,Guizhou Academy of Agricultural Sciences
School of Chemical Engineering,Guizhou University for Nationalities
Guangxi Key Laboratory of Agricultural Resources Chemistry and Biotechnology,Colleges and Universities Key Laboratory for Efficient Use of Agricultural Resources in the Southeast of Guangxi,College of Chemistry and Food Science,Yulin Normal University