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用于高性能对称超级电容器的具有分级孔隙结构的锯末衍生活性炭

Sawdust-Derived Activated Carbon with Hierarchical Pores for High-Performance Symmetric Supercapacitors.

作者信息

Zhou Yan, Li Jun, Hu Shilin, Qian Gujie, Shi Juanjuan, Zhao Shengyun, Wang Yulin, Wang Chuan, Lian Jiabiao

机构信息

School of Ecology and Resource Engineering, School of Civil Engineering and Architecture, Wuyi University, Wuyishan 354300, China.

Key Laboratory of Zhenjiang, Institute for Energy Research, Jiangsu University, Zhenjiang 212013, China.

出版信息

Nanomaterials (Basel). 2022 Feb 28;12(5):810. doi: 10.3390/nano12050810.

Abstract

The recyclable utilization of waste biomass is increasingly important for the development of a sustainable society. Here, the sawdust-derived activated carbon (SD-AC) has been prepared via a convenient HPO-based activation method and further trialed as an electrode for use as a high-performance symmetric supercapacitor. The as-prepared SD-AC possesses a hierarchically porous structure with micropores (0.55 nm) and mesopores (2.58 nm), accounting for its high specific surface area of 621 m g, with a pore volume of 0.35 cm g. Such a hierarchically porous structure can offer a favorable pathway for fast ion penetration and transportation, enhancing its electrochemical performance. As a result, the SD-AC electrode exhibits a maximum specific capacitance of up to 244.1 F g at 1.0 A g, a high rate capability (129.06 F g at 20 A g), and an excellent cycling performance, with 87% retention over 10,000 cycles at 10 A g. Of particular note is that the SD-AC-based symmetric supercapacitor achieves a maximum energy density of 19.9 Wh kg at the power density of 650 W kg, with a long-term cycle lifespan. This work showcases the recyclable utilization of waste biomass for the preparation of high-value activated carbon for efficient energy storage.

摘要

废弃生物质的循环利用对可持续社会的发展愈发重要。在此,通过一种便捷的基于HPO的活化方法制备了锯末衍生活性炭(SD-AC),并进一步将其作为高性能对称超级电容器的电极进行试验。所制备的SD-AC具有由微孔(0.55纳米)和中孔(2.58纳米)组成的分级多孔结构,这使其具有621平方米/克的高比表面积,孔体积为0.35立方厘米/克。这种分级多孔结构可为离子的快速渗透和传输提供有利途径,从而提升其电化学性能。结果,SD-AC电极在1.0安/克时展现出高达244.1法拉/克的最大比电容、高倍率性能(在20安/克时为129.06法拉/克)以及出色的循环性能,在10安/克下10000次循环后电容保持率为87%。特别值得注意的是,基于SD-AC的对称超级电容器在功率密度为650瓦/千克时实现了19.9瓦时/千克的最大能量密度,且具有长期的循环寿命。这项工作展示了废弃生物质的循环利用,用于制备高效储能的高价值活性炭。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7868/8912637/bbb28e28ea68/nanomaterials-12-00810-g001.jpg

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