Preparation method of silver-based composite nanomaterial with surface-enhanced Raman activity, product obtained with preparation method and application of silver-based composite nanomaterial
A technology of nanomaterials and silver-based composites, applied in nanostructure manufacturing, Raman scattering, nanotechnology, etc., can solve the problems of difficult to guarantee detection repeatability, shortened service life, high preparation cost, etc., achieving remarkable SERS effect and easy control , the effect of not easy to reunite
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Embodiment 1
[0056] Weigh 160mg melamine and 68mg silver nitrate with an electronic analytical balance, and dissolve them in 55mL and 5mL water respectively. Then, the newly prepared silver nitrate solution was slowly added dropwise to the melamine aqueous solution under stirring at room temperature, and continued to stir for 30 minutes to obtain a white nearly gelatinous substance, and the supernatant was discarded by centrifugation to obtain an intermediate product. The obtained intermediate product is a solid one-dimensional helical nanoribbon, and its microscopic morphology is shown in figure 1 and figure 2 , the surface of the nanobelt is smooth, the length is submillimeter, the width is about 100nm, and the thickness is about 40nm.
[0057] After re-dispersing the intermediate product with 5mL of absolute ethanol by ultrasound, evenly drop-coat it on a glass plate with a clean surface, dry it in an oven at 45°C, and immerse the dried glass plate containing the intermediate product ...
Embodiment 2
[0059] Weigh 160mg of melamine and 30mg of silver nitrate with an electronic analytical balance, and dissolve them in 55mL and 5mL of water respectively. Then, the newly prepared silver nitrate solution was slowly added dropwise to the melamine solution under stirring at room temperature, and continued to stir for 30 minutes to obtain a white nearly gelatinous substance, and the supernatant was discarded by centrifugation to obtain an intermediate product. The obtained intermediate product is a solid one-dimensional helical nanoribbon, and its microscopic morphology is shown in Figure 4 , the surface of the nanobelt is smooth, the width is 100-200nm, the thickness is 30-50nm, and the length is submillimeter.
[0060] After re-dispersing the intermediate product with 3mL of absolute ethanol by ultrasound, evenly drop-coat it on a glass plate with a clean surface, dry it in an oven at 45°C, and immerse the dried glass plate containing the intermediate product in 0.1mmol / L hydro...
Embodiment 3
[0062] Weigh 160mg of melamine and 48mg of silver nitrate with an electronic analytical balance, and dissolve them in 55mL and 5mL of water respectively. Then, slowly drop the newly configured silver nitrate solution into the melamine solution under stirring at room temperature, and continue to stir for 30 minutes to obtain a white and nearly gelatinous substance. The supernatant was discarded by centrifugation to obtain a solid one-dimensional helical nanoribbon. intermediate product, its microscopic appearance is shown in Figure 6 , the surface of the nanobelt is smooth, the width is 50-200nm, the thickness is 40-50nm, and the length is submillimeter.
[0063] After re-dispersing the intermediate product with 5mL of absolute ethanol by ultrasound, evenly drop-coat it on a glass plate with a clean surface, dry it in an oven at 45°C, and immerse the dried glass plate containing the intermediate product in 0.5mmol / L hydroboration Sodium aqueous solution and keep it for 1min, ...
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