High-strength and temperature-sensitive polymer-graphene oxide composite hydrogel and conductive graphene composite hydrogel as well as preparation methods thereof
A graphene composite and composite hydrogel technology, applied in the field of conductive polymer-graphene composite hydrogel and its preparation, polymer-graphene oxide composite hydrogel, can solve polymer-graphene hydrogel Solve the problems of low strength, low conductivity, and low strength of glue, achieve good mechanical properties and temperature responsiveness, simple preparation method, and low cost
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Embodiment 1
[0032] At room temperature, 80 mg of graphene oxide was dispersed in 10 mL of deoxygenated deionized water by ultrasonication, and a uniformly dispersed dispersion was obtained by ultrasonication for 2 h. Disperse 0.6 g of Laponite XLS in the above-prepared graphene oxide dispersion, stir for 1 h, and then sonicate for 1 h to obtain a uniform dispersion; then add 1.13 g N -Isopropylacrylamide monomer was stirred for 2 h under ice-water bath conditions, and argon gas was passed through the reaction solution to deoxygenate for 10 min; finally, 0.5 mL of initiator potassium persulfate (KPS, 20 mg / mL) was added and Catalyst tetramethylethylenediamine (TEMED) 10 μL, stirred evenly, transferred to a glass test tube and a reaction mold with a thickness of 2 mm to seal, and reacted in a biochemical incubator at 20 °C for 48 h to obtain lithium alginite-reinforced polystyrene. N - Isopropylacrylamide-lithium-graphene oxide composite hydrogel, that is, the high-strength, temperature-sen...
Embodiment 2
[0034] At room temperature, 80 mg of graphene oxide was dispersed in 10 mL of deoxygenated deionized water by ultrasonication, and a uniformly dispersed dispersion was obtained by ultrasonication for 2 h. Disperse 0.6 g of Laponite XLS in the graphene oxide dispersion prepared above, stir for 1 h, and then sonicate for 1 h to obtain a uniform dispersion; then add 1.56 g N -Isopropylacrylamide monomer was stirred for 2 h under ice-water bath conditions, and argon gas was passed through the reaction solution to deoxygenate for 10 min; finally, 0.5 mL of initiator potassium persulfate (KPS, 20 mg / mL) was added and Catalyst tetramethylethylenediamine (TEMED) 10 μL, stirred evenly, transferred to a glass test tube and a reaction mold with a thickness of 2 mm to seal, and reacted in a biochemical incubator at 20 °C for 48 h to obtain lithium alginite-reinforced polystyrene. N - Isopropylacrylamide-lithium-graphene oxide composite hydrogel, that is, the high-strength, temperature-sen...
Embodiment 3
[0036] At room temperature, 80 mg of graphene oxide was dispersed in 10 mL of deoxygenated deionized water by ultrasonication, and a uniformly dispersed dispersion was obtained by ultrasonication for 2 h. Disperse 0.2 g of Laponite XLS in the above-prepared graphene oxide dispersion, stir for 1 h, and then sonicate for 1 h to obtain a uniform dispersion; then add 1.13 g N -Isopropylacrylamide monomer was stirred for 2 h under ice-water bath conditions, and argon gas was passed through the reaction solution to deoxygenate for 10 min; finally, 0.5 mL of initiator potassium persulfate (KPS, 20 mg / mL) was added and Catalyst tetramethylethylenediamine (TEMED) 10 μL, stirred evenly, transferred to a glass test tube and a reaction mold with a thickness of 2 mm to seal, and reacted in a biochemical incubator at 20 °C for 48 h to obtain lithium alginite-reinforced polystyrene. N - Isopropylacrylamide-lithium-graphene oxide composite hydrogel, that is, the high-strength, temperature-sen...
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