A preparation method of shell-like layered high-strength graphene composite electrode material
A graphene composite and electrode material technology, which is applied in the manufacture of hybrid capacitor electrodes, hybrid/electric double layer capacitors, etc., can solve the problems of mechanical properties and capacitive properties of electrode materials that have not been significantly improved, limited electron transfer, and low electrochemical performance. Energy storage capacity and other issues, to achieve flexible and rich interface design, to achieve the effect of flexibility
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Embodiment 1
[0035] Measure the graphene oxide homogeneous dispersion of 1.744mL (density is 7.74mg mL -1 ), add 7.992mL of distilled water, stir for 10min, then ultrasonically disperse for 10min, a brown transparent solution is formed. 0.264ml halloysite-polyaniline solution (density 5.68mg mL -1 ) was added dropwise into the uniformly dispersed graphene oxide solution, and the stirring was continued for 12 hours. After the reaction was complete, the reaction solution was ultrasonically treated for 5 minutes. The above reaction solution was vacuum filtered for 24 hours to obtain a graphene oxide composite material with a layered biomimetic structure. The above reaction solution was vacuum filtered for 24 hours to obtain a graphene oxide composite material with a layered biomimetic structure. During the suction filtration process, the halloysite-polyaniline content is small, and the graphene oxide sheets are oriented in an orderly manner under the action of water flow, forcing the halloy...
Embodiment 2
[0037] Measure the graphene oxide homogeneous dispersion of 1.647mL (density is 7.74mg mL -1 ), add 7.957mL of distilled water, stir for 10min, and then ultrasonically disperse for 10min, a brown transparent solution. 0.396ml halloysite-polyaniline solution (density 5.68mg mL -1 ) was added dropwise into the uniformly dispersed graphene oxide solution, and the stirring was continued for 12 hours. After the reaction was complete, the reaction solution was ultrasonically treated for 5 minutes. The above reaction solution was vacuum filtered for 24 hours to obtain a graphene oxide composite material with a layered biomimetic structure. During the suction filtration process, the halloysite-polyaniline content is small, and the graphene oxide sheets are oriented in an orderly manner under the action of water flow, forcing the halloysite-polyaniline to be arranged in an orderly manner, the reaction sites are exposed, and the interface chemical interaction is the strongest . Therm...
Embodiment 3
[0039] Measure the graphene oxide homogeneous dispersion of 1.550mL (density is 7.74mg mL -1 ), add 8.062mL of distilled water, stir for 10min, and then ultrasonically disperse for 10min to form a brown transparent solution. 0.528ml halloysite-polyaniline solution (density 5.68mg mL -1 ) was added dropwise into the uniformly dispersed graphene oxide solution, and the stirring was continued for 12 hours. After the reaction was complete, the reaction solution was ultrasonically treated for 5 minutes. The above reaction solution was vacuum filtered for 24 hours to obtain a graphene oxide composite material with a layered biomimetic structure. During the suction filtration process, the halloysite-polyaniline content was high, which affected the orderly orientation of graphene oxide sheets under the action of water flow, and the chemical sites were not exposed completely, which hindered the occurrence of interfacial chemical interactions. Then the graphene oxide composite materia...
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