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Extra-Durable Hybrid Supercapacitor Based on Cobalt Sulfide and Carbon (MWCNT) Matrix Electrodes

机译:基于钴硫化物和碳(MWCNT)基质电极的额外耐用的混合式超级电容器

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摘要

A novel energy storage gadget with instantaneous energy/power density is significant in current scenario due to the rapid utilization of renewable energy sources. Also, the electrochemical property of the chosen electrodes have chiefly dependent on the structure of the electrode materials. Keeping these aspects in mind, we have devised to fabricate a hybrid supercapacitor (HSC) composed of a battery-type Faradic electrode (for energy source) and non-Faradic electrode (for power source). The composite electrode material (CoS2/multi-walled carbon nanotube (MWCNT)) prepared in the present study having unique nanostructure (composed of nano sheets and nanotubes) provides plenty of channels for ion mobilization and results in excellent electrochemical performance. Moreover, the fabricated HSC (CoS2/MWCNT//polypropylene & KOH//MWCNT) could capable of delivering an ultra-high specific energy of 8.16 W h kg(-1) with a specific power of 696 W kg(-1) at a specific current of 5 A g(-1). These positive features enriched with the prepared nanocomposite (CoS2/MWCNT) may be explored as promising electrode material in next generation supercapacitors.
机译:由于可再生能源的快速利用,具有瞬时能量/功率密度的新型能量存储小工具在当前情况下显着。而且,所选择的电极的电化学性能主要取决于电极材料的结构。保持这些方面,我们设计为制造由电池型法拉米电极(用于能量源)和非托拉米电极(用于电源)组成的混合超级电容器(HSC)。在本研究中制备的复合电极材料(COS2 /多壁碳纳米管(MWCNT))具有独特的纳米结构(由纳米片和纳米管组成)提供了大量的离子摩托通道,并导致优异的电化学性能。此外,制造的HSC(COS2 / MWCNT //聚丙烯和KOH // MWCNT)能够提供8.16 W H kg(-1)的超高比能量,特定功率为696W kg(-1) 5A G(-1)的特定电流。这些富含制备的纳米复合材料(COS2 / MWCNT)的阳性特征可以探索为下一代超级电容器中的有前途的电极材料。

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