Preparation method and application of molecularly imprinted photonic crystal for detecting sulphaguanidine
A technology of photonic crystals and molecular imprinting, applied in the direction of material analysis, measuring devices, and analytical materials through observation of the impact on chemical indicators, can solve the problem of destroying ecological balance, accelerating the evolution and spread of drug-resistant bacteria, threats to human health, etc. problem, to achieve the effect of large specific surface area and strong specific recognition effect
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Embodiment 1
[0044] Add 0.02g of sulfamidine, 1.20g of acrylamide, 1.2g of methacrylic acid, 1.60g of 4-vinylpyridine, 0.01g of N,N'-methylenebisacrylamide, 0.015g of 2,2'-nitrogen into a 50mL centrifuge tube Heterobis(2-imidazoline) dihydrochloride and 6 g of water were stirred and dissolved evenly, and nitrogen gas was passed for 20 minutes to prepare a precursor solution.
[0045] Fix a clean glass slide vertically in a 150mL beaker, then slowly pour 50mL of polystyrene microspheres with a solid content of 1.5% and a particle size of 625nm into the flask, and then transfer the beaker to a constant temperature water bath at 45°C , kept warm for 48 hours, then transferred the beaker to a 75°C oven and baked for 1 hour, and finally covered another glass slide on the surface of the photonic crystal, and fixed the two slides with adhesive tape to prepare a photonic crystal template.
[0046] Drop 2.0mL of the precursor solution onto the upper edge of the photonic crystal template glass slide...
Embodiment 2
[0049] Add 0.017g sulfamidine, 1.05g acrylamide, 1.15g methacrylic acid, 1.50g 4-vinylpyridine, 0.015g N,N'-methylene bisacrylamide, 0.015g 2,2'- Azabis(2-imidazoline) dihydrochloride and 6.3 g of water were stirred and dissolved evenly, and nitrogen gas was passed for 20 minutes to prepare a precursor solution.
[0050] Fix a clean glass slide vertically in a 150mL beaker, then slowly pour 50mL of polystyrene microspheres with a solid content of 2.0% and a particle size of 525nm into the flask, and then transfer the beaker to a constant temperature water bath at 45°C , keep warm for 48 hours, then transfer the beaker to a 75°C oven for 1 hour, and finally cover another glass slide on the surface of the photonic crystal, and fix the two slides with adhesive tape to prepare a photonic crystal template.
[0051] Drop 2.0mL of the precursor solution onto the upper edge of the photonic crystal template glass slide, tilt the glass slide slightly, and let it stand to make the precur...
Embodiment 3
[0054] Add 0.025g of sulfamidine, 1.35g of acrylamide, 1.15g of methacrylic acid, 1.80g of 4-vinylpyridine, 0.01g of N,N'-methylenebisacrylamide, 0.015g of 2,2'- Azabis(2-imidazoline) dihydrochloride and 5.7 g of water were stirred and dissolved evenly, and nitrogen gas was passed for 20 minutes to prepare a precursor solution.
[0055] Fix a clean glass slide vertically in a 150mL beaker, then slowly pour 50mL of polystyrene microspheres with a solid content of 2.5% and a particle size of 575nm into the flask, and then transfer the beaker to a constant temperature water bath at 45°C , keep warm for 48 hours, then transfer the beaker to a 75°C oven for 1 hour, and finally cover another glass slide on the surface of the photonic crystal, and fix the two slides with adhesive tape to prepare a photonic crystal template.
[0056] Drop 2.0mL of the precursor solution onto the upper edge of the photonic crystal template glass slide, tilt the glass slide slightly, and let it stand to...
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