The present invention belongs to the field of a new polymeric functional material, and more specifically relates to an antibacterial and low-adhesion polyvinyl alcohol coating.
In recent years, low-adhesion coatings without sticking to a liquid have broad application prospects in the fields of anti-fouling and self-cleaning, anti-icing, anti-fogging, liquid transportation and drag reduction etc. The low liquid adhesion performance of such materials is affected by the surface morphology and surface chemical composition of the materials. At present, the existing low-adhesion coatings are prepared with complicated conditions and have a certain biotoxicity, which restrict the development and application of such materials. Therefore, proposing a simple, efficient and biocompatible low-adhesion coating needs to be solved urgently.
Regarding the influence of the surface morphology on the low liquid adhesion performance of the material, a relatively typical one is a micro-nano rough surface structure that imitates the surface of lotus leave. With this kind of material, a micro-nano structure can be formed on and imparted to the material surface by assembling fluorine-containing particles of silica, zinc oxide and the like on the material surface. However, this kind of material is not wear-resistant. Additionally, there are also anti-adhesion materials with smooth-surface structures, such as SLIPS, monomolecular layers and polymer coatings. Since SLIPS and monomolecular layers respectively have problems of lubricant loss and non-wear resistance, polymer coatings have more room for development. Regarding polymer coatings, it has been reported that cross-linking in high density can enhance the interactions within molecules and promote the formation of micro and nano pores on the surface, which improves the anti-adhesion performance of the material surface. On the other hand, the anti-adhesion performance can be achieved by physically mixing or chemically bonding low surface energy monomers to change the chemical composition of the material surface. During a curing process of the coating material, functional monomers may spontaneously enrich on the surface to form a low liquid adhesion layer. At the same time, a liquid-solid interface formed from a foreign liquid and the coating surface inhibits the functional molecular chain segment from reconfiguring, which can realize the anti-adhesion for liquid. However, at present, polymer coatings are prepared by using poorly biocompatible and non-degradable film-forming monomers, and have insufficient anti-liquid adhesion performance.
In order to solve the problems of the existing low-adhesion materials of being complicated for preparation, and being not biocompatible, etc., a primary objective of the present invention is to provide an antibacterial and low-adhesion polyvinyl alcohol coating. A polyvinyl alcohol with good biocompatibility is selected and strongly cross-linked by polyfunctional isocyanate, while a small amount of mono-hydroxy silicone oil is received into the system to impart good low-adhesion performance to a coating. The strong cross-linking enhances an internal interaction force of the coating while imparting a strength to the coating, inhibiting the chemical reconfiguration of functional monomers on the surface, and reducing the interaction between the interface of the coating and foreign substances. A compound with low surface energy is advantageous to regulate the surface energy of the system; efficient coordination of cross-linking and surface energy regulation promotes the coating to exhibit low adhesion for both aqueous and oily liquids, and the coating has good anti-bacterial adhesion performance.
Another objective of the present invention is to provide a method for preparing the above-described antibacterial and low-adhesion polyvinyl alcohol coating.
A further objective of the present invention is to provide an application of the above-described antibacterial and low-adhesion polyvinyl alcohol coating in fields of materials for antifouling and self-cleaning, liquid transportation and implantation in animal body.
The present invention provides an antibacterial and low-adhesion polyvinyl alcohol coating, comprising the following raw materials in terms of weight percentage:
Further, the cross-linking agent is at least one selected from the group consisting of hexamethylene diisocyanate, isophorone diisocyanate and hexamethylene diisocyanate trimer.
Further, the compound with low surface energy is selected from organosilicon compounds, and still further, the organosilicon compound is at least one of monohydroxy-terminated silicone oils having average molecular weights of 1000, 3000, 5000 and 10000.
Further, the polyvinyl alcohol is prepared into a solution with a mass fraction of 0%-10% using a hydrophilic solvent, and the mass fraction is not 0%; and still further the mass fraction is 4%-6%. Furthermore, the hydrophilic solvent is an amide solvent, and is specifically at least one of N,N-dimethylformamide and N,N-dimethylformamide.
Further, the cross-linking agent, the compound with low surface energy and a catalyst are dispersed by selecting a complex solvent of a ketone solvent and an amide solvent. The ketone solvent is at least one of acetone and butanone etc.; the amide solvent is at least one of N,N-dimethylformamide and N,N-dimethylformamide; and the volume ratio of the amide solvent to the ketone solvent is (10-15):1.
Further, the prepolymer solution formed by the raw materials for the antibacterial and low-adhesion polyvinyl alcohol coating has a solid content of 5%-10%.
The present invention provides a method for preparing the antibacterial and low-adhesion cross-linked polyvinyl alcohol coating, comprising the following steps:
A time for the reaction in the step (1) is 12-24 h.
The substrate in the step (3) is tinplate, glass sheet, PET 316 stainless steel or the like. The curing is performed by heating at 100-140° C. for 2-8 h.
The antibacterial and low-adhesion polyvinyl alcohol coating has performances of water adhesion resistance, oil adhesion resistance and bacterial adhesion resistance, and can be applied in fields of materials for antifouling and self-cleaning, liquid transportation and implantation in animal body.
Compared with the prior art, the antibacterial and low-adhesion polyvinyl alcohol coating prepared in the present invention has the following technical effects:
Specific Examples of the present invention are disclosed below, and the technical solutions of the present invention will be further described in detail in combination with Examples, however, the present invention is not limited by these Examples.
An antibacterial and low-adhesion polyvinyl alcohol coating in the present invention is prepared with polyvinyl alcohol, a cross-linking agent, a compound with low surface energy, and a catalyst, and specifically comprises the following raw materials in terms of weight percentage:
0%-0.5%.
The specific substances and the amounts used for each raw material are detailed in Tables 1-3.
The antibacterial and low-adhesion polyvinyl alcohol coating in the present invention was prepared as follows (seeing
The cross-linking agent, the compound with low surface energy, the catalyst and the solvent were added in a three-neck flask and mixed evenly. The temperature of the reaction system was raised to 60-80° C., preferably 60° C., and a reaction precursor was formed after reacting at a constant temperature for 12 h.
The compositions of each raw material in Examples 1-3 respectively correspond to Tables 1-3.
Testing Results
1. Test for Angle of Slide for Water of the Antibacterial and Low-Adhesion Polyvinyl Alcohol Coating
Additionally, it can be seen from the comparison between Example 1 and Example 3 that the angle of slide for water increases significantly with the decrease of solid content, which is attributed to the fact that the thickness of the formed film becomes smaller and the functional monomers with low surface energy are fewer while the solid content is smaller during the coating process, thus reducing the lyophobic ability of the surface.
2. Test for Angle of Slide for Oil of the Antibacterial and Low-Adhesion Polyvinyl Alcohol Coating
3. Antibacterial Test for the Antibacterial and Low-Adhesion Polyvinyl Alcohol Coating
By counting the number of Escherichia coli on the surface of the culture medium, it can be seen from the comparison that Examples 1-3 in
Number | Date | Country | Kind |
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202110577922.9 | May 2021 | CN | national |
Number | Date | Country | |
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Parent | PCT/CN2021/115225 | Aug 2021 | US |
Child | 18489004 | US |