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Antibacterial antifogging agent and antibacterial long-acting antifogging wet wipe prepared by the same

An anti-fog agent, long-acting technology, applied in the direction of chemicals, biocides, disinfectants, etc. used for biological control, can solve the problems of inability to achieve anti-fog effect, difficulty in forming an anti-fog film layer, uniform spreading on the surface of the lens, etc. , to achieve the effect of improving the anti-fog effect, prolonging the anti-fog time, and reducing the stimulation of human skin

Active Publication Date: 2022-05-17
江苏南创化学与生命健康研究院有限公司 +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] At the same time, most lenses, especially high-end lenses, will have a layer of hydrophobic and oleophobic film deposited on them when they leave the factory. Shrinkage cavity phenomenon, so it is difficult to form an effective anti-fog film layer, and the ideal anti-fog effect cannot be achieved

Method used

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  • Antibacterial antifogging agent and antibacterial long-acting antifogging wet wipe prepared by the same
  • Antibacterial antifogging agent and antibacterial long-acting antifogging wet wipe prepared by the same
  • Antibacterial antifogging agent and antibacterial long-acting antifogging wet wipe prepared by the same

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0029] A kind of preparation method of antibacterial type antifogging agent, described preparation method comprises the steps:

[0030] (1) Mix polyacrylic acid (average molecular weight 3000), hyaluronic acid (average molecular weight 100,000-200,000) and polyethylene glycol 400 in a molar ratio of 1:25:5, heat and stir in a water bath at 80°C for 3 hours, After the reaction, according to the mass ratio of polyacrylic acid 0.5:1, polyvinylpyrrolidone (K29-32) was added to obtain a special film-forming agent;

[0031] (2) Mix 0.1g of special film-forming agent, 0.2g of decyl glucoside, 0.05g of polyhexamethyleneguanidine, 0.07g of AEO-9, 0.01g of disodium edetate and 0.1g of perfluorooctyl Polyoxyethylene ether surfactant, add 20g of water, stir at 80rpm, add 0.01g of sodium chloride and 0.1g of citric acid during stirring, and continue stirring for 0.5h;

[0032] (3) After the stirring is completed, add 20 g of absolute ethanol to the system, add 59.36 g of water, stir and m...

Embodiment 2

[0035] A kind of preparation method of antibacterial type antifogging agent, described preparation method comprises the steps:

[0036] (1) Mix polyacrylic acid (average molecular weight 3000), hydroxypropyl methylcellulose (viscosity 15mPa.s) and polyethylene glycol 400 in a molar ratio of 1:45:5, heat and stir in a water bath at 100°C 1.5h, after the reaction finishes, add carboxymethyl cellulose to obtain a special film-forming agent according to the mass ratio of 0.5:1 to polyacrylic acid;

[0037] (2) Mix 0.3g special film-forming agent, 0.5g decyl glucoside, 0.08g Cathone, 0.1g Tween-20, 0.05g tetrasodium glutamic acid diacetate and 0.01g perfluorooctyl polyoxyethylene ether Surfactants, add 25g of water, stir at 100rpm, add 0.1g of sodium chloride and 0.07g of citric acid during stirring, and continue stirring for 1h;

[0038] (3) After the stirring is completed, add 30 g of absolute ethanol to the system, add 43.79 g of water, stir and mix evenly, and let it stand for...

Embodiment 3

[0041] A kind of preparation method of antibacterial type antifogging agent, described preparation method comprises the steps:

[0042] (1) Mix polyacrylic acid (average molecular weight 3000) and 0588 type polyvinyl alcohol in a molar ratio of 1:10, heat and stir in a water bath at 120°C for 0.5h, after the reaction is complete, mix the polyacrylic acid in a mass ratio of 1:1 , adding copolyvidone (copolymer, 7:3) to obtain a special film-forming agent;

[0043] (2) Mix 0.5g special film-forming agent, 0.1g decyl glucoside, 0.1g Cathone, 0.05g Tween-20, 0.01g tetrasodium glutamic acid diacetate and 0.1g perfluorooctyl polyoxyethylene ether Surfactant, add 30g of water, stir at 100rpm, add 0.06g of sodium chloride and 0.05g of citric acid during stirring, and continue stirring for 1.5h;

[0044] (3) After the stirring is completed, add 40 g of absolute ethanol to the system, add 29.03 g of water, stir and mix evenly, and let it stand for 6 hours to obtain a colorless and transp...

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Abstract

The invention discloses an antibacterial antifogging agent and an antibacterial long-acting antifogging wet tissue prepared therefrom. The raw materials and the mass percentages of each raw material are: special film-forming agent 0.1%-0.5%, antibacterial agent 0.05%- 0.1%, chelating agent 0.01%~0.05%, alkyl glycoside 0.1%~0.5%, emulsifier 0.01%~0.1%, fluorocarbon surfactant 0.01%~0.1%, sodium chloride 0.01%~0.1%, citric acid 0.05% to 0.1%, absolute ethanol 10% to 40%, and water balance; the product of the invention prolongs the anti-fog time to a great extent, and is applicable to various types of lenses at the same time.

Description

technical field [0001] The invention relates to the technical field of antibacterial and antifog products, in particular to an antibacterial antifogging agent and an antibacterial long-lasting antifogging wet wipe prepared therefrom. Background technique [0002] Transparent materials such as glass and resin play an important role in daily life and industrial production, but such transparent products (such as corrective glasses, sunglasses, ski / sports glasses, protective glasses, window glass, bathroom glass, etc.) Fog. Fogging is caused by the liquefaction and condensation of water vapor on the surface of the transparent substrate to form extremely fine water droplets. In daily life, the fogging phenomenon is more likely to occur in the following two scenarios: one is the transition from a cold environment to a warm environment (for example, in the cold winter, entering the room from the outside), and the other is the transparent substrate and relative humidity. Higher ho...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C09K3/18A01N47/44A01N43/80A01P1/00A47K10/16
CPCC09K3/18A01N47/44A01N43/80A47K10/16
Inventor 何丽蓉胡建明许波连
Owner 江苏南创化学与生命健康研究院有限公司
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