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首页> 外文期刊>Journal of power sources >A high-performance covalently bonded self-doped polyaniline-graphene assembly film with superior stability for supercapacitors
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A high-performance covalently bonded self-doped polyaniline-graphene assembly film with superior stability for supercapacitors

机译:高性能共价键合的自掺杂聚苯胺 - 石墨烯 - 石墨烯组装膜,具有优异的超级电容器稳定性

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In this study, a robust high-performance polyaniline-modified graphene electrode is successfully used to assemble a supercapacitor. Graphene is covalently bonded to self-doped polyaniline (SPANI) and used in supercapacitors, and 4-aminobenzoic acid-modified graphene (ABF-G) sheet materials are first bonded to an aniline functional group at graphene edges. Then, aniline, o-aminobenzene sulfonic acid monomers, and an oxidising agent are added into the ABF-G aqueous dispersion to achieve polymerisation on the surface of ABF-G. This covalently bonded SPANI-modified ABF-G (SPANI-ABF-G) thin-film electrode material is then used for fabricating supercapacitors. A Raman spectrometer, a scanning electron microscope, a secondary ion mass spectrometer, an X-ray electron photon spectrometer, and a specific surface area analyser are used to characterise this film. The supercapacitor with the proposed SPANI-ABF-G electrodes exhibits a high specific capacitance value of 642.6 F/g for charging and discharging at a current density of 1 A/g. After 5000 cycle-life testing, this supercapacitor exhibits a charging and discharging capacitance retention of 100% and 98.13% at a current density of 1 and 2 A/g, respectively. These capacitance retentions are higher than those of supercapacitors with conductive polymers electrodes. The results prove that electrode materials prepared using covalently bonded graphene and PANI can considerably improve supercapacitor performance.
机译:在该研究中,成功​​地用于组装超级电容器的稳健高性能聚苯胺改性的石墨烯电极。石墨烯与自掺杂的聚苯胺(SPANI)共价键合,并在超级电容器中使用,并且首先将4-氨基苯甲酸改性的石墨烯(ABF-G)片材在石墨烯边缘的苯胺官能团中键合。然后,将苯胺,O-氨基苯磺酸单体和氧化剂加入到ABF-G水分散体中,以在ABF-g的表面上实现聚合。然后将该共价键合的猿猴改性的ABF-G(谱ABF-G)薄膜电极材料用于制造超级电容器。拉曼光谱仪,扫描电子显微镜,二次离子质谱仪,X射线电子光子光谱仪和特定表面积分析仪用于表征该薄膜。具有所提出的SPAI-ABF-G电极的超级电容器具有642.6 f / g的高特定电容值,用于以1a / g的电流密度充电和放电。在5000次循环寿命测试之后,该超级电容器分别在1和2A / g的电流密度下表现出100%和98.13%的充电和排出电容保持。这些电容保留高于具有导电聚合物电极的超级电容器。结果证明,使用共价键合石墨烯和PANI制备的电极材料可显着提高超级电容器性能。

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