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Ultrathin Ni1−xCoxS2 nanoflakes as high energy density electrode materials for asymmetric supercapacitors

机译:Ni1−超薄xCoxS2纳米薄片作为不对称超级电容器的高能量密度电极材料

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摘要

Transition metal compounds such as nickel cobalt sulfides (Ni–Co–S) are promising electrode materials for energy storage devices such as supercapacitors owing to their high electrochemical performance and good electrical conductivity. Developing ultrathin nanostructured materials is critical to achieving high electrochemical performance, because they possess rich active sites for electrochemical reactions, shortening the transport path of ions in the electrolyte during the charge/discharge processes. This paper describes the synthesis of ultrathin (around 10 nm) flower-like Ni Co S nanoflakes by using templated NiCo oxides. The as-prepared Ni Co S material retained the morphology of the initial NiCo oxide material and exhibited a much improved electrochemical performance. The Ni Co S electrode material exhibited a maximum specific capacity of 1066.8 F·g (533.4 C·g ) at 0.5 A·g and a capacity retention of 63.4% at 20 A·g in an asymmetric supercapacitor (ASC). The ASC showed a superior energy density of 100.5 Wh·kg (at a power density of 1.5 kW·kg ), an ultrahigh power density of 30 kW·kg (at an energy density of 67.5 Wh·kg ) and excellent cycling stability. This approach can be a low-cost way to mass-produce high-performance electrode materials for supercapacitors.
机译:过渡金属化合物,例如硫化镍钴(Ni–Co–S),由于其高电化学性能和良好的导电性,是用于储能设备(例如超级电容器)的有前途的电极材料。开发超薄纳米结构材料对于实现高电化学性能至关重要,因为它们具有丰富的电化学反应活性位,从而缩短了充电/放电过程中电解质中离子的传输路径。本文介绍了超薄(约10 nm)花状Ni的合成 通过使用模板化的NiCo氧化物制备Co S纳米片。制备好的镍 Co S材料保留了初始NiCo氧化物材料的形貌,并表现出大大改善的电化学性能。然后我 在不对称超级电容器(ASC)中,Co S电极材料在0.5 A•g时的最大比容量为1066.8 F•g(533.4 C•g),在20 A•g时的容量保持率为63.4%。 ASC的能量密度为100.5 Wh·kg(功率密度为1.5 kW·kg),超高功率密度为30 kW·kg(能量密度为67.5 Wh·kg),循环稳定性极佳。这种方法可能是批量生产用于超级电容器的高性能电极材料的低成本方法。

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