A preparation method of screen-printed molybdenum-doped tungsten oxide nanostructure electrochromic film
A nanostructure, electrochromic technology, applied in tungsten oxide/tungsten hydroxide, instruments, coatings, etc., can solve the problems of unfavorable lithium ion insertion and extraction, poor energy utilization, long response time, etc. Electron transfer, low cost, small size effect
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Embodiment 1
[0028] a. Dissolve 5g of tungstic acid in 60mL of 30% hydrogen peroxide, heat in an oil bath to 95°C, stir until a clear solution is obtained, add 1.44g of molybdenum oxide, 70mL of ethylene glycol and 70mL of deionized water into the resulting clear solution , raise the temperature of the oil bath to 120°C, condense and reflux for 10 hours to obtain the nano-tungsten oxide sol, then rotate it at 10,000 rpm for 20 minutes, pour off the supernatant, and finally wash the precipitate with ionized water and ethanol;
[0029] b. Dissolve ethyl cellulose in ethanol at room temperature, the mass ratio of ethyl cellulose to ethanol is 1:10, stir to obtain a clear and transparent sol, take 15g of the obtained sol and add 12g terpineol and 3g molybdenum doping The tungsten oxide nano-sol was prepared by rotary evaporation of the organic solvent at 90°C to obtain the molybdenum-doped tungsten oxide nano-slurry;
[0030] c. Sonicate the ITO or FTO conductive glass with detergent, deionize...
Embodiment 2
[0035] a. Dissolve 5g of tungstic acid in 60mL of 30% hydrogen peroxide, heat the oil bath to 95°C, and stir until a clear solution is obtained. Add 1.44g of molybdenum oxide, 70mL of ethylene glycol and 70mL of deionized water to the obtained clear solution, raise the temperature of the oil bath to 110°C, and reflux for 12 hours to obtain tungsten oxide nanosol. Then, centrifuge at a speed of 10000rpm / min for 20min, pour off the supernatant; finally use ionized water and ethanol to wash the precipitate respectively;
[0036] b. Dissolve ethyl cellulose in ethanol at room temperature, the mass ratio of ethyl cellulose to ethanol is 1:5, and stir to obtain a clear and transparent sol. Next, 9 g of terpineol and 3 g of molybdenum-doped tungsten oxide nano-sol were added to 18 g of clarified ethylcellulose sol, and the organic solvent was rotary evaporated at 90° C. to prepare molybdenum-doped tungsten oxide nano-slurry;
[0037] c. Sonicate the ITO or FTO conductive glass with ...
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