Preparing method and application of electrogenerated chemiluminescence sensor based on polydopamine nanometer microspheres
A technology of nano-microspheres and polydopamine, which is applied in the fields of chemiluminescence/bioluminescence, electrochemical variables of materials, and analysis through chemical reactions of materials, etc. problems, to achieve good biodegradability, large surface area, and fast response
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Embodiment 1
[0023] Example 1 A preparation method of an electrochemiluminescent sensor based on polydopamine nanospheres
[0024] (1) Polish the glassy carbon electrode with a diameter of 4 mm with 1.0 μm, 0.3 μm, and 0.05 μm alumina polishing powder in sequence, and rinse it with ultrapure water;
[0025] (2) Drop-coat 6 μL, 0.3 mg / mL aminated multi-walled carbon nanotube / Nafion solution onto the electrode surface, immerse the electrode in 1 mM ruthenium terpyridyl solution for 30 min, and rinse the electrode surface with ultrapure water;
[0026] (3) Add 6 µL, 5 µg / mL antibody solution dropwise, dry it in a refrigerator at 4°C, and rinse the electrode surface with ultrapure water;
[0027] (4) Add 3 µL bovine serum albumin solution with a mass fraction of 1% dropwise, dry it in a refrigerator at 4°C, and rinse the electrode surface with ultrapure water;
[0028] (5) Add 6 µL, 0.0001-20 ng / mL of a series of different concentrations of prostate-specific antigen solutions, dry in a refrig...
Embodiment 2
[0030] Example 2 A preparation method of an electrochemiluminescent sensor based on polydopamine nanospheres
[0031] (1) Polish the glassy carbon electrode with a diameter of 4 mm with 1.0 μm, 0.3 μm, and 0.05 μm alumina polishing powder in sequence, and rinse it with ultrapure water;
[0032] (2) Drop-coat 6 μL, 0.5 mg / mL aminated multi-walled carbon nanotube / Nafion solution onto the electrode surface, immerse the electrode in 1 mM ruthenium terpyridyl solution for 30 min, and rinse the electrode surface with ultrapure water;
[0033] (3) Add 6 µL, 7 µg / mL antibody solution dropwise, dry it in a refrigerator at 4°C, and rinse the electrode surface with ultrapure water;
[0034] (4) Add 3 µL bovine serum albumin solution with a mass fraction of 1% dropwise, dry it in a refrigerator at 4°C, and rinse the electrode surface with ultrapure water;
[0035] (5) Add 6 μL, 0.0001-20 ng / mL of a series of different concentrations of prostate-specific antigen solutions, dry in a refrig...
Embodiment 3
[0037] Example 3 A preparation method of an electrochemiluminescent sensor based on polydopamine nanospheres
[0038] (1) Polish the glassy carbon electrode with a diameter of 4 mm with 1.0 μm, 0.3 μm, and 0.05 μm alumina polishing powder in sequence, and rinse it with ultrapure water;
[0039] (2) Drop-coat 6 μL, 0.7 mg / mL aminated multi-walled carbon nanotube / Nafion solution onto the electrode surface, immerse the electrode in 1 mM ruthenium terpyridyl solution for 30 min, and rinse the electrode surface with ultrapure water;
[0040] (3) Add 6 µL, 10 µg / mL antibody solution dropwise, dry it in a refrigerator at 4°C, and rinse the electrode surface with ultrapure water;
[0041] (4) Add 3 µL bovine serum albumin solution with a mass fraction of 1% dropwise, dry it in a refrigerator at 4°C, and rinse the electrode surface with ultrapure water;
[0042] (5) Add 6 μL, 0.0001-20 ng / mL of a series of different concentrations of prostate-specific antigen solutions, dry in a refri...
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