Preparation method and application of zirconium dioxide/porous polyaniline modified electrode
A zirconium dioxide and modified electrode technology, applied in the direction of material electrochemical variables, etc., can solve the problems of poor chemical/physical stability of enzymes or antibodies, and achieve the effects of good catalytic performance, low detection line, and high sensitivity
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Embodiment 1
[0031] Preparation method of zirconium dioxide / porous polyaniline modified electrode
[0032] Instruments and reagents used in this embodiment:
[0033] CHI832 electrochemical analyzer (Shanghai Chenhua Instrument Co., Ltd.) was used for square wave voltammetry experiment; Ag / AgCl reference electrode (Shanghai Ridao Scientific Instrument Co., Ltd.); electronic balance (Beijing Sartorius Instrument Co., Ltd.) was used for weighing Quantitative drugs; JSM-6701F cold field emission scanning electron microscope (Japan Electronics Co., Ltd.) was used for morphology characterization; aluminum oxide grinding powder (0.30 μm, 0.05 μm, Shanghai Chenhua Instrument Reagent Co., Ltd.) was used to process glassy carbon electrodes; Aniline (purity 99.78%), zirconium oxychloride, sulfuric acid, potassium perchlorate (Tianjin Kaixin Chemical Industry Co., Ltd.), high-purity nitrogen (purity 99.999%, O 2 ≤0.001%).
[0034] The specific operation steps are as follows:
[0035] a) Before prep...
Embodiment 2
[0040] Zirconium dioxide / porous polyaniline modified electrodes (ZrO 2 -3D PANI / GCE) on the electrochemical performance of methyl parathion
[0041] Zirconium dioxide / porous polyaniline modified electrode in KClO dissolved with methyl parathion 4 The solution was plotted by square wave voltammetry.
[0042] From figure 2 It can be seen that compared with zirconium dioxide and porous polyaniline modified electrode, zirconium dioxide / porous polyaniline modified electrode has a good catalytic effect on the detection of methyl parathion, and in the process of reducing methyl parathion ZrO2 / Porous Polyaniline Synergy for Electrocatalysis of Methylparathion.
[0043] From image 3 It can be seen that the zirconia / porous polyaniline modified electrode has high sensitivity to the electrochemical reduction of methyl parathion, and the detection linear range is 5.964×10 -10 nM to 1.020×10 -8 nM, the detection limit is 2.991×10 -10 nM.
[0044] From Figure 4 It can be seen that ...
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