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Antimonene: A Novel 2D Nanomaterial for Supercapacitor Applications

机译:锑:适用于超级电容器的新型二维纳米材料

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摘要

In pursuing higher energy density, without compromising the power density of supercapacitor platforms, the application of an advanced 2D nanomaterial is utilized to maximize performance. Antimonene, for the first time, is characterized as a material for applications in energy storage, being applied as an electrode material as the basis of a supercapacitor. Antimonene is shown to significantly improve the energy storage capabilities of a carbon electrode in both cyclic voltammetry and galvanostatic charging. Antimonene demonstrates remarkable performance with a capacitance of 1578 F g(-1), with a high charging current density of 14 A g(-1). Hence, antimonene is shown to be a highly promising material for energy storage applications. The system also demonstrates a highly competitive energy and power densities of 20 mW h kg(-1) and 4.8 kW kg(,)(-1) respectively. In addition to the excellent charge storing abilities, antimonene shows good cycling capabilities.
机译:在追求更高的能量密度的同时,又不损害超级电容器平台的功率密度,先进的二维纳米材料的应用可最大限度地提高性能。锑金属首次被表征为用于储能的材料,被用作超级电容器基础的电极材料。锑在循环伏安法和恒电流充电中均能显着提高碳电极的储能能力。锑烯具有1578 F g(-1)的电容,具有14 A g(-1)的高充电电流密度,显示出非凡的性能。因此,显示锑是用于储能应用的极有前途的材料。该系统还展示了极具竞争力的能量密度和功率密度,分别为20 mW h kg(-1)和4.8 kW kg(,)(-1)。除了出色的电荷存储能力外,锑还具有良好的循环能力。

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