Biomass-Derived Porous Carbon Materials for Supercapacitor

Biomass-Derived Porous Carbon Materials for Supercapacitor
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用于超级电容器的生物质衍生多孔碳材料

DOI:
10.3389/fchem.2019.00274
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发表时间:
2019-04
影响因子:
5.5
通讯作者:
Liang Tongxiang
Liang Tongxiang
中科院分区:
化学3区
文献类型:
--
作者:
Yang Hui;Ye Shewen;Zhou Jiaming;Liang Tongxiang

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化石能源的快速消耗和环境的日益恶化促使人们开发清洁、新型的储能系统。超级电容器作为最有前途的候选电容器之一,具有独特的优点,许多电极材料被开发出来。因此,生物质衍生的多孔碳材料(BDPC),以低成本,丰富和可持续的,具有可调节的尺寸,优异的导电性,令人满意的比表面积(SSA)和上级的电化学稳定性已经引起了强烈的关注,并高度信任是一个有能力的候选人超级电容器。本文综述了近年来实验室制备BDPC的方法,并分析了它们对BDPC的微观结构、电导率、化学组成和电化学性能的影响。还将提供该领域未来的研究趋势。
The fast consumption of fossil energy accompanied by the ever-worsening environment urge the development of a clean and novel energy storage system. As one of the most promising candidates, the supercapacitor owns unique advantages, and numerous electrodes materials have been exploited. Hence, biomass-derived porous carbon materials (BDPCs), at low cost, abundant and sustainable, with adjustable dimension, superb electrical conductivity, satisfactory specific surface area (SSA) and superior electrochemical stability have been attracting intense attention and highly trusted to be a capable candidate for supercapacitors. This review will highlight the recent lab-scale methods for preparing BDPCs, and analyze their effects on BDPCs' microstructure, electrical conductivity, chemical composition and electrochemical properties. Future research trends in this field also will be provided.
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