An electrochemiluminescence(ECL) biosensor based on carboxyl functionalized poly[(9,9-dioctylfluorene-2,7-diyl)-co-(1,4-benzo-{2,1′-3}-thiadiazole)]polymer dots(PFBT-COOH) was constructed for the detection of glucose.The PFBT-COOH emitted a strong ECL signal without any exogenous coreactants,which could be effectively quenched by H2O2.In this work,PFBT-COOH was modified onto surface of glassy carbon electrode(GCE),and further cross linked with glucose oxidase(GOD) to obtain the biosensor,GOD/PFBT-COOH/GCE.With increase of glucose concentration in detection solution,amount of H2O2 generated by glucose in situ under the catalysis of GOD would increase,leading to a gradual weakening of ECL signal at the biosensor,thus achieving an accurate,quick and sensitive detection of glucose.The linear range of glucose was in the range of 1.0×10-7-3.0×10-3 mol/L,and the detection limit was 3.0×10-8 mol/L.The method was applid in the detection of glucose in serum samples with spiked recoveries of 985%-106%.Such a strategy provides a new idea for construction of enzyme sensor and a new method for glucose detection.
Preparation of a Laser Induced Graphene/Enzyme Electrode and Its Application in Glucose Detection
Detection of Glucose Using an Electrochemiluminescence Biosensor Based on Ru(bpy)2+3-Triethylamine System
Fabrication of Glucose Biosensor Enhanced by Au Nanoparticles
Synthesis and Characterization of a Long-term Stable Lead-dependent DNAzyme
G-quadruple/Hemin DNAzyme-based Visual Detection of the Folding Structure Formed by d(GGA) Trinucleotide Repeats
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College of Chemical Engineering,Fuzhou University
College of Materials and Chemical Engineering,Minjiang University
重庆市沙坪坝区人民医院消化内科
聊城大学化学化工学院
Hunan Provincial Key Laboratory of Water Treatment Functional Materials,Hunan Province Engineering Research Center of Electroplating Wastewater Reuse Technology,College of Chemistry and Materials Engineering,Hunan University of Arts and Science