In this paper,graphene(rGO) was immobilized on the surface of the electrode by the method of electrochemical reduction of graphene oxide(GO),and then the copper hydroxide-nickel hydroxide nanocomposites were electrodeposited to form graphene/metal hydroxide nanocomposites modified glassy carbon electrode(GCE/rGO/Cu(OH)2-Ni(OH)2).Finally,horseradish peroxidase(HRP) was immobilized onto the surface of the above prepared electrode by electropolymerizing azure I to form the GCE/rGO/Cu(OH)2-Ni(OH)2/HRP-PA(PA: poly azure Ⅰ).The graphene/metal hydroxide nanocomposites were characterized by SEM and EDS.The preparation process and electrochemical performance of the sensor were investigated by electrochemical impedance spectroscopy and cyclic voltammetry.Hydrogen peroxide tert-butyl(BHP) and cumene hydroperoxide(CHP) were determined by the sensor.The linear response of the HRP sensor to BHP was in the concentration range of 2.0×10-5-9.2×10-4mol/L with a detective limit of 9.9×10-6mol/L and that to CHP was in the concentration range of 3.0×10-6-1.0×10-4mol/L with a detective limit of 6.9×10-7mol/L.
Detection of 4-Iodophenoxyacetic Acid Using a Graphene-loaded Tin Dioxide Electrochemical Sensor
Progress in DNA Sequencing Based on Graphene Nanomaterials
In-situ Preparation of a Solid Phase Microextraction Probe Based on Graphene Self assembly and Its Application in Determination of Benzene Series in Water
Research on Sensitive Determination of Daphnetin Using an Electrochemical Sensor Based on PSS Functionalized Spongy Graphene
Determination of Dopamine Based on Acridine Orange-Graphene Oxide Fluorescence Quenching Method
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Laboratory of Chemistry of Xinjiang Specialty Medicinal and Edible Plant Resources, Kashgar University,Kashgar
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School of Chemical Engineering,Guizhou University for Nationalities