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Easy fabrication and high electrochemical capacitive performance of hierarchical porous carbon by a method combining liquid-liquid phase separation and pyrolysis process

机译:液-液相分离与热解相结合的方法易于制备,并具有较高的电化学电容性能

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摘要

A hierarchical porous carbon membrane was designed and prepared through a method combining liquid-liquid phase separation and then pyrolysis process using polyacrylonitrile (PAN) as precursor. The results of scan electron microscopy, transmission electron microscope and Brunauer-Emmett-Teller characterization reveal that the 3D nanoscaled architecture with hierarchical porous structure was achieved, which not only provide a continuous electron pathway to ensure good electrical contact, but also facilitate ion transport by shortening diffusion pathways. The effect of PAN concentration in casting solution on structure feature of carbon membrane was also studied, indicating that the membrane thickness with different porous structure can be mediated by PAN concentration. As the electrode material for supercapacitor, a high specific capacitance of 277.0 Fg~(-1) was attained at a current density of 5 mA cm~(-2) and long cycle life of 90.0% capacity retention was obtained after 2000 charge-discharge cycles in 2 mol L~(-1) KOH solution.
机译:通过结合液相-液相分离,然后以聚丙烯腈(PAN)为前体的热解工艺的方法,设计和制备了一种分层的多孔碳膜。扫描电子显微镜,透射电子显微镜和Brunauer-Emmett-Teller表征的结果表明,获得了具有分层多孔结构的3D纳米级结构,不仅提供了连续的电子路径以确保良好的电接触,而且还促进了离子的传输缩短扩散途径。还研究了流延溶液中PAN浓度对碳膜结构特征的影响,表明PAN浓度可以调节不同多孔结构的膜厚度。作为超级电容器用电极材料,在5 mA cm〜(-2)的电流密度下可获得277.0 Fg〜(-1)的高比电容,经过2000次充放电后可获得90.0%的容量保持率的长循环寿命在2 mol L〜(-1)KOH溶液中循环。

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