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CoS spheres for high-rate electrochemical capacitive energy storage application

机译:CoS球体用于高速率电化学电容性储能应用

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Sphere-like CoS nanostructures are synthesized in water/ethylene glycol mixed solvents by simple hydrothermal technique using L-cysteine amino acid as a source of sulfur. The results obtained by BET and BJH methods reveal that the CoS has mesoporous bimodal pore distribution in the range of 2-23 nm with a dominant peak around 12.4 nm and a small peak at 2.4 nm. The electrochemical experiments demonstrate that CoS has a high-rate capability for capacitor applications. The reduction of the specific capacitance is very marginal by about 13% of the available capacitance of 363 F g~(-1) when the scan rate is increased by 10 times. Even at very high frequency of 10 Hz, it retains the specific capacitance value of 150 F g~(-1) which confirms its higher power capability. Furthermore, during the cycling process, the Coulombic efficiency is better than 90% demonstrating excellent reversibility of CoS electrode.
机译:通过简单的水热技术,使用L-半胱氨酸氨基酸作为硫源,在水/乙二醇混合溶剂中合成球形CoS纳米结构。通过BET和BJH方法获得的结果表明,CoS在2-23 nm范围内具有介孔双峰孔分布,主峰在12.4 nm附近,小峰在2.4 nm。电化学实验表明,CoS在电容器应用中具有很高的速率。当扫描速率提高10倍时,比电容的减小幅度很小,约为363 F g〜(-1)的可用电容的13%。即使在10 Hz的极高频率下,它也保持150 F g〜(-1)的比电容值,这证实了其更高的功率能力。此外,在循环过程中,库仑效率优于90%,这表明CoS电极具有出色的可逆性。

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