A kind of cellulose-graphene composite transparent conductive film and preparation method thereof
A composite technology of transparent conductive film and graphene, which is applied in the direction of graphene, cable/conductor manufacturing, conductive layer on insulating carrier, etc., can solve problems such as easy to break, affect product performance, and interlayer agglomeration, so as to improve migration High efficiency, excellent antibacterial performance, and the effect of improving dispersibility
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Examples
Embodiment 1
[0028] 1) Preparation of cellulose-graphene solution:
[0029] Add 3 g of cotton to 97 g of alkaline urine solution, freeze at -15°C for 1 hour; keep stirring for 30 minutes to thaw, and centrifuge (4500 rpm, 10 minutes) to obtain a cellulose solution. Then add 0.01 g of graphene and stir for 30 min at -15°C.
[0030] 2) Preparation of cellulose gel-graphene gel:
[0031] Add 1.6g of N,N-methylenebisacrylamide to 100ml of cellulose-graphene solution, raise the temperature to 30-60°C and stir for 1 hour, form a gel in a water bath at 30°C, and replace it with deionized water to pH =7.
[0032] 3) Preparation of cellulose-graphene film:
[0033] The cellulose-graphene gel was formed into a thin film by thermocompression molding. The pressure of the hot press is 50pa, the time is 1h, and the temperature is 60°C to obtain a transparent cellulose-graphene film.
Embodiment 2
[0035] 1) Preparation of cellulose-graphene solution:
[0036] Add 3 g of cotton to 97 g of alkaline urine solution, freeze at -15°C for 1 hour; keep stirring for 30 minutes to thaw, and centrifuge (4500 rpm, 10 minutes) to obtain a cellulose solution. Then add 0.01 g of graphene and stir for 30 min at -15°C.
[0037] 2) Preparation of cellulose gel-graphene gel:
[0038] Add 2 g of glutaraldehyde into 100 ml of cellulose-graphene solution, raise the temperature to 40°C and stir for 1 hour, form a gel in a water bath at 40°C, and replace it with deionized water to pH=7.
[0039] 3) Preparation of cellulose-graphene film:
[0040] The cellulose-graphene gel was formed into a thin film by thermocompression molding. The pressure of the hot press is 80pa, the time is 1.5h, and the temperature is 60°C to obtain a transparent cellulose-graphene film.
Embodiment 3
[0042] 1) Preparation of cellulose-graphene solution:
[0043]Add 3 g of cotton to 97 g of alkaline urine solution, freeze at -12°C for 1.5 h; thaw with continuous stirring for 30 min, and centrifuge (5000 rpm, 10 min) to obtain a cellulose solution. Then add 0.01 g of graphene and stir for 30 min at -12°C.
[0044] 2) Preparation of cellulose gel-graphene gel:
[0045] Add 2g of epichlorohydrin into 100ml of cellulose-graphene solution, raise the temperature to 60°C and stir for 1 hour, form a gel in a water bath at 30°C, and replace it in deionized water to pH=7.
[0046] 3) Preparation of cellulose-graphene film:
[0047] The cellulose-graphene gel was formed into a thin film by thermocompression molding. The pressure of the hot press is 50pa, the time is 2h, and the temperature is 60°C to obtain a transparent cellulose-graphene film.
PUM
Property | Measurement | Unit |
---|---|---|
transmittivity | aaaaa | aaaaa |
Abstract
Description
Claims
Application Information
- R&D Engineer
- R&D Manager
- IP Professional
- Industry Leading Data Capabilities
- Powerful AI technology
- Patent DNA Extraction
Browse by: Latest US Patents, China's latest patents, Technical Efficacy Thesaurus, Application Domain, Technology Topic, Popular Technical Reports.
© 2024 PatSnap. All rights reserved.Legal|Privacy policy|Modern Slavery Act Transparency Statement|Sitemap|About US| Contact US: help@patsnap.com