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Self-assembly of nickel phosphate-based nanotubes into two-dimensional crumpled sheet-like architectures for high-performance asymmetric supercapacitors

机译:基于磷酸镍的纳米管子的自组装成高性能不对称超级电容器的二维弄皱的片状架构

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This work demonstrates the successful self-assembly of amorphous nickel phosphate-based nanotubes into two-dimensional (2D) crumpled sheet-like architectures for the first time by employing nickel glycerate particles as sacrificial templates through a two-step phosphoric acid-assisted solvothermal method. A "self-deconstruction-self-weaving" mechanism is believed to be responsible for the formation of such nanotube-assembled crumpled sheet-like architectures from the nickel glycerate template. The asymmetric supercapacitor (ASC) device assembled using nanotube-assembled amorphous 2D nickel phosphate (NiHPi-500) as the positive electrode and activated carbon (AC) as the negative electrode exhibits high energy densities of 50 W h kg(-1), 40 W h kg(-1), and 32 W h kg(-1) at power densities of 362 W kg(-1), 1443 W kg(-1), and 2838 W kg(-1), respectively. Furthermore, this ASC device can retain an impressive energy density of 18 W h kg t at high power density of 7242W kg(-1). In addition, the NiHPi-500//AC ASC also displays good long-term stability with a high capacitance retention of 100% after 5000 cycles at a high current density of 10 Ag-1. The excellent electrochemical performance is attributed to the unique nanotube-assembled 2D architectures, the good interconnectivity between the nanotubes, and the large surface area arising from such structures which can provide many active sites for the redox reactions and facility effective transport and diffusion of the electrolyte ions, leading to more efficient utilization of the active material. These results indicate the promising potential of nanotube-assembled 2D nickel phosphate nanoarchitectures for supercapacitor applications.
机译:这项工作通过使用两步磷酸辅助溶剂热法,首次通过使用镍甘油颗粒作为牺牲模板,首次首次将非晶镍磷酸纳米管的成功自组装成二维(2D)皱巴巴的片状架构。 。据信“自我解构 - 自编织”机制是负责从镍巨果模板形成这种纳米管组装的皱巴巴的片状架构。使用纳米管组装的无定形2D磷酸盐(NiHPI-500)组装的非对称超级电容器(ASC)器件作为负电极的正极和活性炭(AC)表现出50Wh kg(-1)的高能量密度,40在362W kg(-1),1443W kg(-1)和2838W kg(-1)的功率密度下,为32 w h kg(-1)。此外,该ASC装置可以以7242W kg(-1)的高功率密度保持18W H kg T的令人印象深刻的能量密度。此外,NIHPI-500 // AC ASC也显示出良好的长期稳定性,高电容保持在5000次循环的高电流密度为10%Ag-1后。优异的电化学性能归因于独特的纳米管组装的2D架构,纳米管之间的良好互连和由这种结构产生的大表面积,其可以为氧化还原反应和设施有效运输和电解质扩散提供许多活性位点离子,导致更有效地利用活性材料。这些结果表明了用于超级电容器应用的纳米管组装的2D磷酸盐纳米建筑的有希望的潜力。

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