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首页> 外文期刊>Journal of solid state electrochemistry >Biomass-derived porous carbon electrode modified with nanostructured nickel-cobalt hydroxide for high-performance supercapacitors
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Biomass-derived porous carbon electrode modified with nanostructured nickel-cobalt hydroxide for high-performance supercapacitors

机译:用纳米结构镍 - 钴氢氧化物改性生物质衍生的多孔碳电极,用于高性能超级电容器

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摘要

Apple-derived porous carbon (denoted as APC) is successfully prepared and analyzed as a potential carbon material by hydrothermal carbonization and pyrolysis, which exhibits a high specific surface area and porous structure. Furthermore, nickel-cobalt double hydroxide (Ni-Co DH) is synthesized by design of hybrid nanowires on APC for supercapacitors via a simple hydrothermal process. The fabricated electrode produces a capacitance of 1519 F g(-1) at 1 A g(-1), and 90.2% of the capacitance is retained after 2000 cycles at a high current density. An asymmetric supercapacitor (ASC) is assembled using the Ni-Co DH@APC as the positive electrode and active carbon as the negative electrode. The ASC exhibits a prominent energy density of 61.2 Wh kg(-1) and high power density of 14,400 W kg(-1) at 5 A g(-1). The desirable electrochemical performance can be attributed to the suitability of APC as a support and the Ni-Co nanostructure constructed on the surface of APC as an effective active material for high-energy and long-life cycling supercapacitor applications. The fabricated composite provides a potential design of low-cost functional carbon materials that can be produced in large scale by using biomass as starting materials.
机译:通过水热碳化和热解成功制备苹果衍生的多孔碳(表示为APC),并分析为潜在的碳材料,其具有高比表面积和多孔结构。此外,通过简单的水热法制备超级电容器在APC上设计杂合纳米线,合成镍 - 钴双氢氧化物(Ni-Co DH)。制造的电极在1Ag(-1)下产生1519 f g(-1)的电容,并且在高电流密度的2000次循环之后将90.2%保留。使用Ni-Co DH @ APC作为正极和活性炭作为负电极组装不对称超级电容器(ASC)。 ASC表现出61.2WH kg(-1)和14,400W kg(-1)的高功率密度的突出能量密度,5Ag(-1)。所需的电化学性能可归因于APC作为支撑的适用性,并且在APC的表面上构成的Ni-Co纳米结构作为高能量和长寿命循环超级电容器应用的有效活性材料。制造的复合材料提供了低成本官能碳材料的潜在设计,可以通过使用生物质作为原料大规模生产。

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