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Membrane MnO_2 coated Fe_3O_4/CNTs negative material for efficient full-pseudocapacitance supercapacitor

机译:膜MnO_2包覆的Fe_3O_4 / CNTs负极材料可用于高效全假电容超级电容器

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In this work, carbon nanotubes (CNTs) decorated with Fe3O4 nanoparticles and then covered with MnO2 membrane were synthesized by hydrothermal method as supercapacitor negative material. Thanks to this special structure, the Fe3O4 /CNTs@MnO2 negative material showed a high specific capacitance of 643.8 F g (-1) at 1 A g (-1). Moreover, the full-pseudocapacitance symmetrical supercapacitor device was assembled, exhibiting excellent specific capacitance (132 F g (-1) at 1 A g (-1)) and wonderful stability (63% at 1 Ag (-1) after 10,000 cycling). It is worth mentioned that the stability wasn't decayed from 1000 to 10,000 cycling. Specially, after lighting one white LED bulb (working voltage greater than 3 V), two fully charged symmetric supercapacitors (in series) can continue to light four red LED bulbs. (C) 2019 Elsevier B.V. All rights reserved.
机译:在这项工作中,用水热法合成了用Fe3O4纳米粒子装饰然后覆盖MnO2膜的碳纳米管(CNT)作为超级电容器负极材料。由于这种特殊的结构,Fe3O4 / CNTs @ MnO2负极材料在1 A g(-1)时显示出643.8 F g(-1)的高比电容。此外,组装了全伪电容对称超级电容器器件,具有极好的比电容(在1 A g(-1)时为132 F g(-1))和出色的稳定性(在10,000次循环后在1 Ag(-1)时为63%) 。值得一提的是,稳定性从1000循环到10,000循环没有下降。特别是,在点亮一个白色LED灯泡(工作电压大于3 V)后,两个完全充电的对称超级电容器(串联)可以继续点亮四个红色LED灯泡。 (C)2019 Elsevier B.V.保留所有权利。

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