Preparation method of ionic gel stretchable electroluminescent device based on imidazole chloride salt
An electroluminescent device, ion gel technology, applied in the direction of electric solid device, semiconductor/solid-state device manufacturing, electrical components, etc., can solve the problems of poor mechanical stability and insufficient electrical conductivity of light-emitting devices, and achieve low cost and electrical conductivity. Excellent and stable effect
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Embodiment 1
[0031] Preparation of ion gels. Dissolve PVA, BA, and EmimCl in distilled water (0.125g / mL, 0.0063g / mL, and 0.05g / mL, respectively), mix and stir the materials, and then ultrasonicate for 30 minutes to remove air bubbles. The reaction was stirred at 90° C. for 1 h, cooled to room temperature, and the ion gel was prepared.
[0032] Take 1g doped Cu 2+ 5g of PDMS was added to ZnS fluorescent powder (doping ratio: 0.01wt%), stirred evenly to form an emulsion, and ultrasonic treatment was performed for 30 minutes to remove air bubbles. Put the emulsion into an oven at 80°C to react for 3 hours, and solidify to obtain the electroluminescent layer
[0033] Use a wire bar coater to use the obtained electroluminescent layer as a substrate, and use the roller coating method to coat the ion gel prepared above on both ends of the substrate respectively, and put the coated device into a refrigerator at -4 °C After 12 hours of reaction, it was taken out and cooled to room temperature. ...
Embodiment 2
[0037] Preparation of ion gels. Dissolve PVA, BA, and EmimCl in distilled water (0.125g / mL, 0.0063g / mL, and 0.05g / mL, respectively), mix and stir the materials, and then ultrasonicate for 30 minutes to remove air bubbles. The reaction was stirred at 80° C. for 1 h, cooled to room temperature, and the ion gel was prepared.
[0038] Take 2g doped Cu 2+ 5g PDMS was added to the ZnS fluorescent powder (doping ratio 0.03wt%), stirred evenly to form an emulsion, and ultrasonic treatment was performed for 30 minutes to remove air bubbles. Put the emulsion into an oven at 80°C to react for 3 hours, and solidify to obtain the electroluminescent layer
[0039] Use a wire bar coater to use the obtained electroluminescent layer as a substrate, and use the roller coating method to coat the ion gel prepared above on both ends of the substrate respectively, and put the coated device into a refrigerator at -4 °C After 12 hours of reaction, it was taken out and cooled to room temperature. ...
Embodiment 3
[0042] Preparation of ion gels. Dissolve PVA, BA, and EmimCl in distilled water (0.15 g / mL, 0.001 g / mL, and 0.08 g / mL, respectively), mix and stir the materials, and then ultrasonicate for 30 min to remove air bubbles. The reaction was stirred at 90° C. for 1 h, cooled to room temperature, and the ion gel was prepared.
[0043] Take 1g doped Cu 2+ 5g PDMS was added to the ZnS fluorescent powder (doping ratio 0.05wt%), stirred evenly to form an emulsion, and ultrasonic treatment was performed for 30 minutes to remove air bubbles. Put the emulsion into an oven at 80° C. to react for 3 hours, and solidify to obtain an electroluminescent layer.
[0044] Use a wire bar coater to use the obtained electroluminescent layer as a substrate, and use the roller coating method to coat the ion gel prepared above on both ends of the substrate, and put the coated device into a refrigerator at -4 °C After 18 hours of reaction, it was taken out and cooled to room temperature.
[0045] Fig...
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