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Metallic CoS2 nanowire electrodes for high cycling performance supercapacitors

机译:用于高循环性能超级电容器的金属CoS2纳米线电极

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摘要

We report metallic cobalt pyrite (CoS2) nanowires (NWs) prepared directly on current collecting electrodes, e.g., carbon cloth or graphite disc, for high-performance supercapacitors. These CoS2 NWs have a variety of advantages for supercapacitor applications. Because the metallic CoS2 NWs are synthesized directly on the current collector, the good electrical connection enables efficient charge transfer between the active CoS2 materials and the current collector. In addition, the open spaces between the sea urchin structure NWs lead to a large accessible surface area and afford rapid mass transport. Moreover, the robust CoS2 NW structure results in high stability of the active materials during long-term operation. Electrochemical characterization reveals that the CoS2 NWs enable large specific capacitance (828.2 F g(-1) at a scan rate of 0.01 V s(-1)) and excellent long term cycling stability (0-2.5% capacity loss after 4250 cycles at 5 A g(-1)) for pseudocapacitors. This example of metallic CoS2 NWs for supercapacitor applications expands the opportunities for transition metal sulfide-based nanostructures in emerging energy storage applications.
机译:我们报告了直接在集电电极(例如碳布或石墨盘)上制备的金属黄铁矿(CoS2)纳米线(NWs),用于高性能超级电容器。这些CoS2 NW在超级电容器应用中具有多种优势。由于金属CoS2 NW是直接在集电器上合成的,因此良好的电连接可实现活性CoS2材料与集电器之间的高效电荷转移。此外,海胆结构NW之间的开放空间会导致较大的可触及表面积并提供快速的大众运输。此外,坚固的CoS2 NW结构可在长期运行过程中使活性材料具有较高的稳定性。电化学表征表明,CoS2 NWs可以实现大的比电容(828.2 F g(-1),扫描速率为0.01 V s(-1))和出色的长期循环稳定性(4250次5次循环后容量损失为0-2.5%)伪电容器的g(-1))。用于超级电容器应用的金属CoS2 NW的这一示例为新兴的储能应用扩展了基于过渡金属硫化物的纳米结构的机会。

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