Preparation method of silver ion catalytic western blot optical and electrochemical sensor
A Western blotting, silver ion technology, applied in the field of functional materials, sensors and biomedicine, and analytical chemistry, it can solve the problems of variable elution, difficulty and time-consuming of protein templates.
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Embodiment 1
[0017] a) Soak the cleaned bare carbon electrode in an aqueous solution of 0.01% by mass of 3-aminopropyltriethoxysilane for treatment, and introduce amino groups on the surface of the bare carbon electrode;
[0018] b) preparing bovine serum protein mass percentage concentration of 0.01%, sodium alginate mass percentage concentration of 0.1%, acrylamide mass percentage concentration of 0.5%, ammonium persulfate mass percentage concentration of 0.01%, and carboxylated graphene mass percentage concentration of 0.01% mixture aqueous solution A, standing for defoaming and placing it in a sterile container for later use; preparing N, N-methylenebisacrylamide mass percentage concentration 0.01% and silver nitrate mass percentage concentration 0.01% mixture aqueous solution B; preparing calcium nitrate mass percentage concentration 0.1 % calcium nitrate aqueous solution;
[0019] c) Quickly mix the mixture aqueous solution A obtained in step b) with the mixture aqueous solution B, a...
Embodiment 2
[0022] a) Soak the cleaned bare carbon electrode in a 2% by mass aqueous solution of 3-aminopropyltriethoxysilane for treatment, and introduce amino groups on the surface of the bare carbon electrode;
[0023] b) preparing ovalbumin mass percentage concentration 5%, sodium alginate mass percentage concentration 5%, acrylamide mass percentage concentration 10%, ammonium persulfate mass percentage concentration 1%, carboxylated graphene mass percentage concentration 1% mixture aqueous solution A, static defoaming and placed in a sterile container for subsequent use; prepare N, N-methylenebisacrylamide mass percentage concentration 0.5% and silver nitrate mass percentage concentration 0.5% mixture aqueous solution B; prepare calcium nitrate mass percentage concentration 5 % calcium nitrate aqueous solution;
[0024]c) Quickly mix the mixture aqueous solution A obtained in step b) with the mixture aqueous solution B, and coat the mixed aqueous solution on the bare carbon electrode...
Embodiment 3
[0027] a) Soak the cleaned bare carbon electrode in an aqueous solution of 0.5% by mass of 3-aminopropyltriethoxysilane for treatment, and introduce amino groups on the surface of the bare carbon electrode;
[0028] b) Prepare a mixture aqueous solution A with a concentration of 1.5% by mass of fibronectin, 1% by mass of sodium alginate, 2% by mass of acrylamide, 0.2% by mass of ammonium persulfate, and 0.1% by mass of carboxylated graphene , standing for defoaming and placing it in a sterile container for subsequent use; prepare a mixture aqueous solution B with a mass percentage concentration of 0.1% of N,N-methylenebisacrylamide and a mass percentage concentration of silver nitrate of 0.15%; prepare calcium nitrate with a mass percentage concentration of 0.3% Calcium nitrate aqueous solution;
[0029] c) Quickly mix the mixture aqueous solution A obtained in step b) with the mixture aqueous solution B, and coat the mixed aqueous solution on the bare carbon electrode obtaine...
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