Zhuang Qi-Qi, Cao Jing-Pei, Zhao Xiao-Yan, Wu Yan, Zhou Zhi, Zhao Ming, Zhao Yun-Peng, Wei Xian-Yong
Key Laboratory of Coal Processing and Efficient Utilization (Ministry of Education), China University of Mining & Technology, Xuzhou 221116, Jiangsu, China.
Key Laboratory of Coal Processing and Efficient Utilization (Ministry of Education), China University of Mining & Technology, Xuzhou 221116, Jiangsu, China.
J Colloid Interface Sci. 2020 May 1;567:347-356. doi: 10.1016/j.jcis.2020.02.022. Epub 2020 Feb 8.
Coal tar pitch (CTP) with high carbon content and wide source of raw materials was an excellent precursor for the preparation of porous carbons (PCs). CTP was composed of polycyclic aromatic hydrocarbons (PAHs) with complex molecular size and chemical structure, the separation of CTP into several fractions with relatively narrow molecular weight by solvent extraction was of significance for CTP utilization. In this paper, CTP was treated by single-solvent extraction (carbon disulfide, acetone and ethyl acetate), and the six fractions were used as raw materials to prepare PCs as electrode material for electric double layer capacitor. The fractions were well characterized and the effect of mass distribution of different narrow fractions on structure property and electrochemical performance of the PCs was studied. The PCs prepared by carbon disulfide extract, acetone raffinate and ethyl acetate extract, containing more PAHs, exhibited the excellent specific capacitance performance in comparison with its residual components. The remarkable performance might contribute in the enhanced transport of electrolyte ions via the molecular graphene structure of PAHs. Additionally, the PC prepared by carbon disulfide raffinate showed outstanding cycling performance (99.7% at 2 A g after 15,000 cycles) which was related to its unique layered porous structure.
煤焦油沥青(CTP)碳含量高且原料来源广泛,是制备多孔碳(PCs)的优良前驱体。CTP由分子大小和化学结构复杂的多环芳烃(PAHs)组成,通过溶剂萃取将CTP分离成几个分子量相对较窄的馏分对CTP的利用具有重要意义。本文采用单溶剂萃取(二硫化碳、丙酮和乙酸乙酯)对CTP进行处理,并将这六个馏分用作原料制备PCs作为双电层电容器的电极材料。对这些馏分进行了充分表征,并研究了不同窄馏分的质量分布对PCs结构性能和电化学性能的影响。由二硫化碳萃取物、丙酮萃余物和乙酸乙酯萃取物制备的PCs含有较多的PAHs,与其余组分相比,表现出优异的比电容性能。这种显著的性能可能有助于通过PAHs的分子石墨烯结构增强电解质离子的传输。此外,由二硫化碳萃余物制备的PCs表现出出色的循环性能(15000次循环后在2 A g下为99.7%),这与其独特的层状多孔结构有关。