Composite solid polymer electrolyte and preparation method thereof
A solid polymer and electrolyte technology, applied in circuits, electrical components, secondary batteries, etc., can solve the problem of limited ion conductivity, and achieve the effect of improving ion conductivity, reducing crystallinity, and small size
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Embodiment 1
[0023] Prepare as follows:
[0024] (I) Mix 8g of sodium hydroxide and 40ml of acetone and stir for 1 hour, then stop stirring, and place the mixed solution in a dry environment to react at room temperature for 5 days; then add an appropriate amount of 1mol / L dilute Hydrochloric acid, adjust the pH value of the solution to 7, then perform ultrasonic dispersion, centrifugal separation, and deionized water washing for 5 times, and finally vacuum dry at 100°C for 12 hours to obtain carbon quantum dot solids with an average diameter of 3 to 5 nm;
[0025] (II) The carbon quantum dots prepared in the first step, polyoxyethylene and lithium perchlorate with a molecular weight of 600,000g / mol were dissolved in acetonitrile solution, stirred at room temperature for 12 hours, and poured into a polytetrafluoroethylene mold, controlled The amount of the mixed solution poured in the mold, the composite solid electrolyte obtained by vacuum drying, the thickness is 100 μm; wherein the molar...
Embodiment 2
[0029] Prepare as follows:
[0030] (I) Mix 8g of sodium hydroxide and 40ml of 40% aqueous solution of acetaldehyde and stir for 1 hour, then stop stirring, and place the mixed solution in a dry environment to react at room temperature for 5 days; then add An appropriate amount of 1mol / L dilute hydrochloric acid, adjust the pH value of the solution to 7, then perform ultrasonic dispersion, centrifugal separation, and deionized water washing 5 times, and finally vacuum dry at 100°C for 12 hours to obtain carbon with an average diameter of 3-5nm quantum dot solid;
[0031] (II) The carbon quantum dots prepared in the first step, polyoxyethylene and sodium perchlorate with a molecular weight of 600,000g / mol were dissolved in acetonitrile solution, stirred at room temperature for 12 hours and poured into a polytetrafluoroethylene mold, controlled The amount of the mixed solution poured into the mold was vacuum-dried to obtain a composite solid electrolyte with a thickness of 100 ...
Embodiment 3
[0035] Prepare as follows:
[0036] (I) Mix 6g of potassium hydroxide and 40ml of acetone and stir for 2 hours, then stop stirring, and place the mixed solution in a dry environment to react at room temperature for 3 days; then add an appropriate amount of 1mol / L dilute Hydrochloric acid, adjust the pH value of the solution to 7, then perform ultrasonic dispersion, centrifugal separation, and deionized water washing for 5 times, and finally vacuum dry at 120°C for 12 hours to obtain carbon quantum dot solids with an average diameter of 3 to 5 nm;
[0037] (II) Dissolve the carbon quantum dots prepared in the first step, polyacrylonitrile with a molecular weight of 150,000 g / mol, and lithium bistrifluoromethanesulfonate imide in acetonitrile solution, stir at room temperature for 12 hours, and then cast on polytetrafluoroethylene In the vinyl mold, control the amount of the mixed solution poured into the mold, and obtain a composite solid electrolyte by vacuum drying, so that t...
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