摘要石墨烯具有大的比表面积和良好的导电性,将其制备成为水凝胶,可有效减少石墨烯片层的团聚。本论文采用氧化-还原法,以氧化石墨为原料、水合肼为还原剂,在氨水的碱性环境中成功制备出石墨烯水凝胶,利用SEM、FT-IR和Raman对样品进行了结构表征,并对其进行了电化学研究。结果表明,制备出的石墨烯水凝胶具备褶皱的片状结构。温度对样品的电化学性能影响较大,随着温度升高,样品的比电容减小,最大比电容值为146.8F/g。原料经冰冻和解冻可使制备出的样品褶皱度获得一定程度的增加,但对比电容的贡献不大。凝胶烘干后,由于比表面积和孔体积的减小,电化学性能大幅下降。关键词 石墨烯 水凝胶 超级电容器 电化学性能9356
毕业设计说明书(论文)外文摘要
Title The Structural Control of the Graphene Hydrogels and their properties
Abstract
Graphene has a large specific surface area and a good electrical conductivity, which could be prepared in the form of hydrogel to reduce the restacking of the graphene sheets effectively. In this paper, oxidation-reduction method was used to prepare graphene hydrogel with graphite oxide as the raw material and hydrazine hydrate as reducing agent in the alkaline environment of the ammonia. The graphene hydrogel was successfully prepared, which was also characterized by SEM, FT-IR and Raman, and its electrochemical properties were studied as well. The results showed that the obtained graphene hydrogel has the fold-sheet structure. The temperature has a great influence on the electrochemical properties of the samples, and the capacitances of the samples decrease with the increasing temperature. The maximum specific capacitance value is 146.8F/g. Graphite oxide, which was frozen and thawed, could increase the corrugation degree of the graphene sheets to some extent, but this didn't make a great difference to the specific capacitance of the samples. The electrochemical performance of the dried gel dropped significantly because of the decreasing surface area and pore volume.
Keywords Graphene Hydrogel Supercapacitor Electrochemical Performance
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