A kind of preparation method of dextran/nano gold-silver alloy composite
A technology of dextran and nano-gold, which is applied in the direction of nanotechnology, nanotechnology, nanotechnology for materials and surface science, etc., can solve the problems of high temperature, slow reaction speed, and difficult silver nanoparticles, etc., and reach the particle size Uniformity, good antibacterial effect, simple operation steps
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Embodiment 1
[0034] A preparation method of dextran / nano gold-silver alloy composite, comprising the following steps:
[0035] (1) Seal and dissolve dextran (2-10 mg / mL) in water, continuously stir and quickly add 0.5-1.0 times the volume of chloroauric acid solution dropwise, then use high-power microwave heating to obtain dextran reduction prepared by rapid reaction Gold nano-seeds with smaller particles; the mass ratio of dextran and chloroauric acid used is 100:1-20:1, the microwave power is above 800W, and the reaction time is within 2 minutes; the amount of dextran used in the reaction is far more than that of gold The amount of ions used is because dextran not only participates in the reaction as a reducing agent, but also acts as a stabilizer by being adsorbed on the surface of nanoparticles. Dextran is preferably dextran with a molecular weight of 7W; microwave heating is mainly due to its The heating is uniform and fast, and nano-seeds with smaller particle size and uniformity ca...
Embodiment 2
[0040] Dextran (8 mg / mL) was sealed and dissolved in 100 mL of water, and chloroauric acid solution (equal volume 0.1 mg / mL) was added dropwise rapidly with continuous stirring, and then heated with high-power microwave (1000W) for two minutes to obtain gold nano-seeds / dextran solution; after the gained gold nano-seed / dextran solution is cooled to room temperature, add silver nitrate solution, the mol ratio of gold-silver ion is 1:1, seal after mixing evenly, heat and stir at 70 ℃ for 20 minutes, The dextran / nano gold-silver alloy composite solution is obtained, and then filtered, centrifuged, dispersed, dialyzed and freeze-dried to obtain polysaccharide gold-silver alloy nanoparticles. The ultraviolet absorption peaks of the synthesized gold-silver alloy nanoparticles in aqueous solution are as follows: figure 1 As shown, there is a single peak, and there is no single absorption peak of gold or silver nanoparticles, indicating that the nano-alloy particles were successfully ...
Embodiment 3
[0042] Dextran (6 mg / mL) was sealed and dissolved in water, and chloroauric acid solution (equal volume 0.1 mg / mL) was added dropwise rapidly with continuous stirring, and then heated with high-power microwave (1000W) for two minutes to obtain gold nano-seeds / glucose polysaccharide solution; after cooling the obtained gold nano seed / dextran solution to room temperature, add silver nitrate solution, the molar ratio of gold and silver ions is 1:5, seal it after mixing evenly, and heat and stir at 70°C for 25 minutes to obtain glucose The polysaccharide / nano gold-silver alloy complex solution was then filtered, centrifuged, dispersed, dialyzed and freeze-dried to obtain the polysaccharide fund-silver nanoparticle alloy. The ultraviolet absorption peaks of the synthesized gold-silver alloy nanoparticles in aqueous solution are as follows: image 3As shown, there is also a single peak, indicating the successful synthesis of nano-alloy particles. The morphology of the alloy particl...
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