Preparation method and application of label-free electrochemiluminescent clenbuterol immunosensor
An immunosensor and electrochemistry technology, which is applied in the fields of chemiluminescence/bioluminescence, electrochemical variables of materials, and analysis through chemical reactions of materials, etc., can solve the problems of unfavorable luminescent system popularization and harsh reaction conditions, etc. Achieve the effects of improving detection sensitivity and reproducibility, convenient operation, and low detection limit
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Embodiment 1
[0030] Example 1 Preparation of label-free electrochemiluminescent clenbuterol immunosensor
[0031] (1) Use a glassy carbon electrode with a diameter of 4 mm as the working electrode, and drop-coat 5 uL TiO on the surface of the electrode 2 NPs, after drying at room temperature, drop-coated 5 μL of AuAg NRs-CHS solution and dried at room temperature;
[0032] (2) Wash the electrode obtained in step (1) with ultrapure water, dry it at room temperature to form a film, and drop-coat 5uL 0.01 mol / L H 2 PdCl 4 , and immediately irradiated with a high-pressure mercury lamp for 30 seconds to obtain TiO 2 - AuAg-Pd NDRs-CHS modified working electrode, dry at room temperature;
[0033] (3) Wash the electrode obtained in step (2) with ultra-pure water, dry it at room temperature, immerse the electrode in the EDC / NHS solution, and take it out after 1 hour;
[0034] (4) Wash the electrode obtained in step (3) with ultrapure water, drop-coat 5 μL of 10 μg / mL clenbuterol antibody so...
Embodiment 2
[0041] Example 2 Preparation of label-free electrochemiluminescent clenbuterol immunosensor
[0042] (1) Use a glassy carbon electrode with a diameter of 4 mm as the working electrode, and drop-coat 8 uL TiO on the surface of the electrode 2 NPs, after drying at room temperature, drop-coated 8 μL of AuAg NRs-CHS solution and dried at room temperature;
[0043] (2) Wash the electrode obtained in step (1) with ultrapure water, dry it at room temperature to form a film, and drop-coat 8uL 0.01 mol / L H 2 PdCl 4 , and immediately irradiated with a high-pressure mercury lamp for 60 seconds to obtain TiO 2 - AuAg-Pd NDRs-CHS modified working electrode, dry at room temperature;
[0044] (3) Same as embodiment 1;
[0045] (4) Wash the electrode obtained in step (3) with ultrapure water, drop-coat 8 μL of 10 μg / mL clenbuterol antibody solution on the surface of the electrode, and store it in a refrigerator at 4 °C to dry;
[0046] (5) Wash the electrode obtained in step (4) with ...
Embodiment 3
[0051] Example 3 Preparation of label-free electrochemiluminescent clenbuterol immunosensor
[0052] (1) Use a glassy carbon electrode with a diameter of 4 mm as the working electrode, and drop-coat 10 uL TiO on the surface of the electrode 2 NPs, after drying at room temperature, drop-coated 10 μL of AuAg NRs-CHS solution and dried at room temperature;
[0053] (2) Wash the electrode obtained in step (1) with ultrapure water, dry it at room temperature to form a film, and drop-coat 10uL 0.01 mol / L H 2 PdCl 4 , and immediately irradiated with a high-pressure mercury lamp for 90 seconds to obtain TiO 2 - AuAg-Pd NDRs-CHS modified working electrode, dry at room temperature;
[0054] (3) Same as embodiment 1;
[0055] (4) Wash the electrode obtained in step (3) with ultrapure water, drop-coat 10 μL of 10 μg / mL clenbuterol antibody solution on the surface of the electrode, and store it in a refrigerator at 4 °C to dry;
[0056] (5) Wash the electrode obtained in step (4) w...
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