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三维多级孔石墨烯/聚苯胺复合材料的制备及电化学性能
引用本文:侯朝霞,赵蓝蔚.三维多级孔石墨烯/聚苯胺复合材料的制备及电化学性能[J].复合材料学报,2019,36(7):1591-1600.
作者姓名:侯朝霞  赵蓝蔚
作者单位:沈阳大学 机械工程学院 辽宁省新型功能材料与化学工艺重点实验室, 沈阳 110044
基金项目:国家自然科学基金(51472166)
摘    要:采用水热法合成聚糠醇(PFA),探究了表面活性剂聚乙烯吡咯烷酮(PVP)添加量和反应时间对PFA微观形貌的影响。将改进Hummers法制备的氧化石墨烯(GO)对PFA、泡沫Ni进行包覆,探讨了PFA模板与GO不同质量比的包覆效果。去模板后成功构筑三维大孔石墨烯(3DrGO),3DrGO再经KOH活化获得三维多级孔石墨烯(3DPrGO),3DPrGO经与聚苯胺(PANI)原位复合获得3DPrGO/PANI复合材料。采用XRD、SEM、TEM、FTIR、XPS和比表面(BET)分析法对材料的物相组成、微观结构、形貌、比表面和孔径进行表征,采用循环伏安、恒流充放电、电化学阻抗谱分析了3DPrGO/PANI复合材料的电化学性能。结果表明:通过控制糠醇、PVP及水的比例,在180℃水热反应24h成功制备了球径在500nm左右的PFA微球。在PFA与GO质量比为1∶1时包覆效果最佳。450℃热处理6h成功去除PFA模板并形成400~600nm左右的大孔,经KOH活化后,在3DPrGO上形成介孔结构。3DPrGO/PANI复合材料在0.5A/g电流密度下比电容为433F/g,在1A/g下1 000次循环充放电之后,3DPrGO/PANI复合材料的比电容保留率为75%,高于纯PANI的69%。

关 键 词:三维多孔石墨烯  聚苯胺  模板法  KOH活化  电化学性能
收稿时间:2018-06-26

Preparation and electrochemical performance of 3D hierarchical porous graphene/polyaniline composites
HOU Zhaoxia,ZHAO Lanwei.Preparation and electrochemical performance of 3D hierarchical porous graphene/polyaniline composites[J].Acta Materiae Compositae Sinica,2019,36(7):1591-1600.
Authors:HOU Zhaoxia  ZHAO Lanwei
Affiliation:Liaoning Province Key Laboratory of New Functional Materials and Chemical Technology, School of Mechanical Engineering, Shenyang University, Shenyang 110044, China
Abstract:Poly(furfuryl alcohol) (PFA) was synthesized by the hydrothermal method. The effect of surfactant polyvinylpyrrolidone (PVP) amount and hydrothermal duration on the micromorphology of PFA was investigated. PFA and Ni foam were coated with graphene oxide (GO) prepared by the modified Hummers method, and the coating effects of different mass ratios of PFA:GO were investigated. 3D macroporous graphene (3D rGO) was successfully built through removing PFA and Ni foam templates. 3D hierarchical porous graphene (3D PrGO) was constructed on 3D rGO by KOH activation. 3D PrGO/PANI was synthesized by in-situ composite. The phase composition, microstructure and morphology were analyzed by XRD, SEM, TEM, FTIR, XPS and Brunner-Emmet-Teller (BET) measurements. The electrochemical performance of the composites was analyzed by cyclic voltammetry, galvanostatic charge-discharge and electrochemical impedance spectroscopy. The results show that PFA microspheres with a diameter of about 500 nm are successfully synthesized by controlling the ratio of furfuryl alcohol, PVP and water at 180℃ for 24 h. The coating effect is the best at mass ratio of PFA:GO=1:1. The PFA templates are successfully removed by heat treatment at 450℃ for 6 h and pore sizes of 400-600 nm are formed. The mesopores are formed on the 3D rGO after KOH activation. The specific capacitance of 3D PrGO/PANI composites is 433 F/g at 0.5 A/g, and retains 75% after 1 000 cycling at 1 A/g, which is higher than that of pure PANI (69%).
Keywords:3D hierarchical porous graphene  polyaniline  template method  KOH activation  electrochemical performance  
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