Preparation method and application of autoluminescence-exictation-based hydrogen peroxide electrochemical sensor
A technology of self-luminescence excitation and hydrogen peroxide, applied in chemiluminescence/bioluminescence, analysis through chemical reaction of materials, electrochemical variables of materials, etc., can solve the problems of restricting wide application and affecting the convenience of operation , achieve high selectivity detection, easy operation, improve detection sensitivity and detection limit
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Embodiment 1
[0036] Embodiment 1 A kind of hydrogen peroxide photoelectrochemical sensor based on self-luminous excitation
[0037] A method for preparing a hydrogen peroxide photoelectrochemical sensor based on self-luminescence excitation, the specific preparation steps are:
[0038] (1) Preparation of electrochemiluminescence working electrode W1:
[0039] 1) Use ITO conductive glass as the working electrode, and drop-coat NH on the surface of the electrode 4 NiPO 4 , covering an area of 1cm×1cm, and dry at room temperature;
[0040] 2) Immerse the working electrode obtained in 1) into the electrolyte solution, and the immersion area is NH 4 NiPO 4 For the covered area, use a three-electrode system to electrochemically deposit the working electrode, take out the working electrode after deposition, wash it with ultrapure water, and dry it at 4°C in the dark to prepare the electrochemiluminescence working electrode W1;
[0041] The NH 4 NiPO 4 The solution is an aqueous solution of...
Embodiment 2
[0058] Embodiment 2 A kind of hydrogen peroxide photoelectrochemical sensor based on self-luminous excitation
[0059] A method for preparing a hydrogen peroxide photoelectrochemical sensor based on self-luminescence excitation, the specific preparation steps are:
[0060] (1) Preparation of electrochemiluminescence working electrode W1:
[0061] The preparation steps are the same as the preparation steps of W1 in Example 1, the difference is: the ammonium salt addition is 0.3g in the preparation step of the nickel ammonium phosphate micro-nano material, the phosphate addition is 0.20g, and the nickel dichloride addition is 0.20g, the stirring temperature and time are 38°C and 12h respectively; the concentration of luminol in the electrolyte is 5mmol / L, and the concentration of sulfuric acid is 0.5mol / L; when electrochemical deposition is carried out by cyclic voltammetry, cycle 25 times.
[0062] (2) Preparation of photoelectrochemical working electrode W2:
[0063] 1) Usin...
Embodiment 3
[0069] Embodiment 3 A hydrogen peroxide photoelectrochemical sensor based on self-luminous excitation
[0070] A method for preparing a hydrogen peroxide photoelectrochemical sensor based on self-luminescence excitation, the specific preparation steps are:
[0071] (1) Preparation of electrochemiluminescence working electrode W1:
[0072] The preparation steps are the same as the preparation steps of W1 in Example 1, the difference is: the ammonium salt addition is 0.4g in the preparation step of the nickel ammonium phosphate micro-nano material, the phosphate addition is 0.25g, and the nickel dichloride addition is 0.25g, the stirring temperature and time are 45°C and 14h respectively; the concentration of luminol in the electrolyte is 10mmol / L, and the concentration of sulfuric acid is 1.0mol / L; when electrochemical deposition is carried out by cyclic voltammetry, cycle 30 times.
[0073] (2) Preparation of photoelectrochemical working electrode W2:
[0074] 1) Using ITO c...
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