Antibacterial oxygen solution and preparation method and application thereof
An antibacterial oxygen and solution technology, used in antibacterial, antifungal, topical antibacterial agents, etc., can solve the problems of low dissolved oxygen concentration, small wound oxygen supply, complicated operation, etc., and achieve the effect of high dissolved oxygen concentration
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Embodiment 1
[0031] Dissolve 0.1 g of carboamide peroxide in 33.78 g of water, and the resulting aqueous solution is A component. Dissolve 0.02g sodium hypochlorite in 60g water, add 1g perfluoroalkyl polyoxyethylene ether DuPont And 5g fluorooctyl bromide, the solution formed is B component. Slowly add the solution of component A to component B. After the reaction is completed (no bubbles will be generated in the solution), inject 0.1 g of diethylenetriaminepentamethylenephosphonic acid, and leave it in a closed container to obtain an oxygen-enriched antibacterial solution.
Embodiment 2
[0033] Dissolve 1.5g of carboxamide peroxide in 20g of water, and the resulting aqueous solution is A component. Dissolve 0.5g of potassium hypochlorite in 37g of water, add 15g of perfluoroalkyl alcohol polyoxyethylene ether and 25g of perfluorooctane, and the formed solution is component B. Slowly add the solution of component A to component B, inject 1g of ethylenediaminetetramethylenephosphonic acid after the reaction is completed, and let it stand in a closed container to obtain an oxygen-enriched antibacterial solution.
Embodiment 3
[0035] Dissolve 0.5g of carboxamide peroxide in 24.25g of water, and the resulting aqueous solution is A component. Dissolve 0.05g of sodium hypobromite in 60g of water, add 5g of perfluoropolyether sulfonate DuPont And 10g perfluorotripropylamine, the solution formed is B component. Slowly add the solution of component A to component B, inject 0.2g of aminotrimethylene phosphonic acid after the reaction is completed, and let it stand in a closed container to obtain an oxygen-enriched antibacterial solution.
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