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Ni(OH)_2-Co_2(OH)_3Cl bilayer nanocomposites supported by Ni foams for binder-free electrodes of high-performance hybrid supercapacitors

机译:Ni泡沫支撑的Ni(OH)_2-Co_2(OH)_3Cl双层纳米复合材料,用于高性能混合超级电容器的无粘合剂电极

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Electrochemical materials with ordered nanostructure are widely researched due to the larger contact area with electrolyte and higher utilization rate of electroactive material. Therefore, Ni(OH)(2)-Co-2(OH)(3)Cl bilayer nanocomposites are firstly synthesized and directly used as binder-free electrodes of high-performance hybrid supercapacitors. Structural characterization results indicate that the as-obtained products belong to bilayer nanocomposites, i.e.: the underlying inter-crosslinked nanosheets are Ni(OH)(2) and the upper embellished flower-like materials are Co-2(OH)(3)Cl. Electrochemical tests demonstrate that Ni(OH)(2)-Co-2(OH)(3)Cl bilayer nanocomposites possess higher specific capacity compared with inter-crosslinked Ni(OH)(2) nanosheets. More importantly, hybrid supercapacitors based on Ni(OH)(2)-Co-2(OH)(3)Cl bilayer nanocomposites and chitosan-derived biomass carbon exhibit high energy density of 37.6 W h kg(-1) at power density of 257.8 W kg(-1) and 98.21% capacity retention rate after 10,000 charge-discharge cycles. Meanwhile, a mini fan and the "heart" composed of ten LEDs can be easily powered by two tandem hybrid supercapacitors. Hence, it is anticipated that the Ni(OH)(2)-Co-2(OH)(3)Cl bilayer nanocomposites are the promising materials for hybrid supercapacitors in the future.
机译:由于与电解质的接触面积更大,电活性材料的利用率更高,因此,具有有序纳米结构的电化学材料得到了广泛的研究。因此,首先合成了Ni(OH)(2)-Co-2(OH)(3)Cl双层纳米复合材料,并将其直接用作高性能混合超级电容器的无粘结剂电极。结构表征结果表明,所获得的产物属于双层纳米复合材料,即:下面的相互交联的纳米片是Ni(OH)(2),上面装饰的花状材料是Co-2(OH)(3)Cl 。电化学测试表明,与相互交联的Ni(OH)(2)纳米片相比,Ni(OH)(2)-Co-2(OH)(3)Cl双层纳米复合材料具有更高的比容量。更重要的是,基于Ni(OH)(2)-Co-2(OH)(3)Cl双层纳米复合材料和壳聚糖衍生的生物质碳的混合超级电容器在功率密度为时显示出37.6 W h kg(-1)的高能量密度。 10,000次充放电循环后,容量保持率为257.8 W kg(-1)和98.21%。同时,一个微型风扇和由十个LED组成的“心脏”可以很容易地由两个串联的混合超级电容器供电。因此,可以预见的是,Ni(OH)(2)-Co-2(OH)(3)Cl双层纳米复合材料是将来用于混合超级电容器的有前途的材料。

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