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源自花椒的分级多孔碳用于具有良好倍率性能和循环稳定性的高性能对称超级电容器。

Hierarchical Porous Carbon Derived from Sichuan Pepper for High-Performance Symmetric Supercapacitor with Decent Rate Capability and Cycling Stability.

作者信息

Zhang Hengshuo, Xiao Wei, Zhou Wenjie, Chen Shanyong, Zhang Yanhua

机构信息

Research Institute for New Materials Technology, Chongqing University of Arts and Sciences, Yongchuan, Chongqing 402160, China.

Faculty of Materials and Energy, Southwest University, Chongqing 400715, China.

出版信息

Nanomaterials (Basel). 2019 Apr 4;9(4):553. doi: 10.3390/nano9040553.

Abstract

Hierarchical micro-mesoporous carbon (denoted as HPC-2 in this study) was synthesized by pre-carbonization of biomass Sichuan pepper followed by KOH activation. It possessed well-developed porosity with the specific surface area of 1823.1 m² g and pore volume of 0.906 cm³ g, and exhibited impressive supercapacitive behaviors. For example, the largest specific capacitance of HPC-2 was tested to be ca. 171 F g in a three-electrode setup with outstanding rate capability and stable electrochemical property, whose capacitance retention was near 100% after cycling at rather a high current density of 40 A g for up to 10,000 cycles. Furthermore, a two-electrode symmetric supercapacitor cell of HPC-2//HPC-2 was constructed, which delivered the maximum specific capacitance and energy density of ca. 30 F g and 4.2 Wh kg, respectively, had prominent rate performance and cycling stability with negligible capacitance decay after repetitive charge/discharge at a high current density of 10 A g for over 10,000 cycles. Such electrochemical properties of HPC-2 in both three- and two-electrode systems are superior or comparable to those of a great number of porous biomass carbon reported previously, hence making it a promising candidate for the development of high-performance energy storage devices.

摘要

通过对生物质花椒进行预碳化然后用氢氧化钾活化,合成了分级微介孔碳(本研究中记为HPC-2)。它具有发达的孔隙率,比表面积为1823.1 m²/g,孔容为0.906 cm³/g,并表现出令人印象深刻的超级电容行为。例如,在三电极装置中测试的HPC-2的最大比电容约为171 F/g,具有出色的倍率性能和稳定的电化学性能,在40 A/g的相当高电流密度下循环10000次后,其电容保持率接近100%。此外,构建了HPC-2//HPC-2的两电极对称超级电容器单元,其分别提供了约30 F/g和4.2 Wh/kg的最大比电容和能量密度,具有突出的倍率性能和循环稳定性,在10 A/g的高电流密度下重复充放电超过10000次后电容衰减可忽略不计。HPC-2在三电极和两电极系统中的这种电化学性能优于或与先前报道的大量多孔生物质碳相当,因此使其成为开发高性能储能装置的有前途的候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de3b/6523137/4925082f9a1b/nanomaterials-09-00553-g001.jpg

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