A stretchable energy storage electrochromic device
An electrochromic device, electrochromic layer technology, applied in instruments, nonlinear optics, optics, etc., can solve problems such as low capacitance, and achieve the effect of long service life
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Embodiment 1
[0030] The stretchable substrate, the carbon conductive layer and the metal oxide electrochromic layer are used to prepare the stretchable energy storage electrochromic device according to the following steps:
[0031] (1) Polydimethylsiloxane and curing agent are mixed in a mass ratio of 5:1 and poured into a petri dish (thickness 0.1mm), degassed, and cured at 10°C for 0.5 hours, taken out, cut into specific sizes, Shape, stretched so that it elongates by 10%, acts as a base.
[0032] (2) Take 5 mg of carbon nanotubes, dissolve them in 100 mL of absolute ethanol, and disperse them in an ultrasonic cleaner at room temperature for 1 hour to obtain a high-concentration and uniformly dispersed carbon nanotube solution, which is configured to a concentration of 0.05 mg / mL carbon nanotube solution. The solution was spin-coated on the substrate with a spin coater, and after the dispersant was naturally volatilized and dried, a second spin-coating was performed, and this was repeat...
Embodiment 2
[0037] The stretchable substrate, the carbon conductive layer and the metal oxide electrochromic layer are used to prepare the stretchable energy storage electrochromic device according to the following steps:
[0038] (1) Mix polydimethylsiloxane and curing agent in a mass ratio of 10:1, pour it into a petri dish (thickness 1mm), degas, and cure at 40°C for 1.5 hours, take it out, and cut it into a specific size and shape , stretched to elongate 30%, as the base.
[0039] (2) Take 10 mg of carbon nanotubes, dissolve them in 100 mL of absolute ethanol, and disperse them in an ultrasonic cleaner at room temperature for 2 hours to obtain a high-concentration and uniformly dispersed carbon nanotube solution, which is configured to a concentration of 0.1 mg / mL carbon nanotube solution. The solution was spin-coated on the substrate with a spin coater, and after the dispersant was naturally volatilized and dried, the second spin-coating was performed, and this was repeated 4 times ...
Embodiment 3
[0044] The stretchable substrate, the carbon conductive layer and the metal oxide electrochromic layer are used to prepare the stretchable energy storage electrochromic device according to the following steps:
[0045] (1) Mix polydimethylsiloxane and curing agent at a mass ratio of 15:1 and pour it into a petri dish (thickness 10mm), degas, and cure at 70°C for 3 hours, take it out, and cut it into a specific size and shape , stretched to elongate 50%, as the base.
[0046] (2) Take 20 mg of carbon nanotubes, dissolve them in 100 mL of absolute ethanol, and disperse them in an ultrasonic cleaner at room temperature for 3 hours to obtain a high-concentration and uniformly dispersed carbon nanotube solution, which is configured to a concentration of 0.2 mg / mL carbon nanotube solution. The solution was spin-coated on the substrate with a spin coater, and after the dispersant was naturally volatilized and dried, a second spin-coating was performed, and this was repeated 5 times ...
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