An electrochemical sensor for ultrasensitive detection of sulfathiazole and its detection method
A sulfathiazole and sensitive detection technology, applied in the direction of material electrochemical variables, can solve the problems of expensive, complex sample pretreatment technology, long analysis time, etc., and achieve the effect of low cost, good electrical conductivity, and short analysis time
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[0059] 1. Modification of electrochemical sensor electrodes:
[0060] 8 μL of Au@COF composite material solution with a concentration of 2.0 mg / mL was drop-coated on the surface of the bare glassy carbon electrode and dried at room temperature. The modified Au@COF / GCE electrode was obtained; 10 μL of CuS dispersion solution with a concentration of 1.5mg / mL was drop-coated on the surface of the Au@COF / GCE electrode, and dried to obtain the modified CuS / Au@COF / GCE electrode; The CuS / Au@COF / GCE electrode was immersed in an acetonitrile solution containing 5 mM sulfathiazole, 0.1 M pyrrole, and 0.1 M tetrabutylammonium perchlorate for electrochemical polymerization. Use cyclic voltammetry to scan 5 circles at a rate of 100mV / s within the potential range of -0.6V-+1.2V. Then immerse the electrode in a NaOH solution with a concentration of 1.0mol / L and use cyclic voltammetry to scan 15 circles at a rate of 50mV / s in the potential range of -0.6V-+1.2V to obtain the Au@COF composite,...
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