Method for preparing TiO2/ conducting polymer thin film
A conductive polymer and thin film technology, applied in circuits, photovoltaic power generation, electrical components, etc., can solve the problems of high cost and complex preparation process, achieve the effect of smooth surface, wide source of raw materials, and improved film-forming performance
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Examples
Embodiment 1
[0019] First, add 37.5mL of commercially available reagent grade ethanol into the beaker, and add 3mL of 70% HNO by weight while stirring. 3 With 5mL deionized water, slowly drip 17mL of commercially available reagent grade butyl titanate into the beaker under stirring, and continue stirring for 20 minutes to obtain light yellow transparent TiO 2 Sol.
[0020] For the treatment of ITO conductive glass, first ultrasonically clean it with washing liquid for 10 minutes, then ultrasonically clean it with deionized water for 10 minutes, then ultrasonically clean it with acetone and isopropanol for 10 minutes, and finally use N 2 Blow dry and set aside.
[0021] Then ethanol and polyethylene dioxythiophene / polybenzene sulfonic acid (a reagent grade product from Sigma-Aldrich, USA, the solvent is water, where the mass fraction of polyethylene dioxythiophene is 0.5%, and the mass fraction of polyphenylene sulfonic acid 0.8%) according to the volume ratio of 1:1 uniformly mixed, the mixed so...
Embodiment 2
[0023] First, add 30mL ethanol into the beaker, and add 3mL 70% HNO dropwise while stirring. 3 With 8mL of deionized water, slowly drop 13.7mL of butyl titanate into the beaker under stirring, continue to stir for 60 minutes, the mixed solution forms a light yellow transparent colloidal solution, you can get uniform particle size distribution, spherical TiO 2 Sol.
[0024] ITO conductive glass is treated by ultrasonic cleaning with washing liquid for 20 minutes, then with deionized water for 20 minutes, and then with acetone and isopropanol for 20 minutes, and finally with N 2 Blow dry and set aside.
[0025] An aqueous solution of poly[2-(3-thienyl)-ethoxy-4-butylsulfonic acid] with a concentration of 12 mg / mL was prepared for use. Then, ethylene glycol and polyethylene dioxythiophene / polybenzene sulfonic acid are uniformly mixed in a volume ratio of 1:1, and the mixed solution is spin-coated on the surface of ITO conductive glass at a speed of 1200r / min. The latter ITO conductive...
Embodiment 3
[0027] First, add 50mL ethanol into the beaker, and add 3mL 70% HNO dropwise while stirring. 3 And 8mL deionized water, slowly drip 17mL butyl titanate into the beaker under stirring, and continue to stir for 60 minutes to obtain light yellow transparent TiO 2 Sol.
[0028] ITO conductive glass, first ultrasonically clean it with washing liquid for 30 minutes, then ultrasonically clean with deionized water for 30 minutes, then ultrasonically clean with acetone and isopropanol for 30 minutes, and finally use N 2 Blow dry and set aside.
[0029] An aqueous solution of poly[2-(3-thienyl)-ethoxy-4-butylsulfonic acid] with a concentration of 15 mg / mL was prepared for use. Then, glycerol and polyethylenedioxythiophene / polyphenylsulfonic acid were uniformly mixed in a volume ratio of 1:1, and the mixed solution was spin-coated on the surface of ITO conductive glass at a speed of 2500r / min. The latter ITO conductive glass was dried at 100°C for 0.5h before use. First, the ITO conductive g...
PUM
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