Sun Yue, Zhang Mingyang, Tan Shengnan, Song Rongjun
Heilongjiang Key Laboratory of Molecular Design and Preparation of Flame Retarded Materials, College of Chemistry, Chemical Engineering and Resource Utilization, Northeast Forestry University, Harbin 150040, People's Republic of China.
Nanotechnology. 2021 Aug 12;32(44). doi: 10.1088/1361-6528/ac1757.
A kind of biomass-based hierarchical porous carbons (HPCs) is easily synthesized by the direct pyrolysis of castor oil/MgO solids, in which the solids can be prepared by mixing appropriate amounts of MgO into castor oil. The morphology, microstructure, phase structure, textural property, surface element composition and thermal stability properties are studied for the achieved HPCs. It is demonstrated that the HPCs belong to a type of high-graphitization, graphene-like and foamed carbon materials with high specific surface area and wide pore size distribution. The HPC obtained at 900 °C (HPC-900) displays the highest specific surface area of 1013.17 mg and more reasonable pore size distribution. Without the need of conductive agents, the HPC-900 exhibits a maximum capacitance (340 F gat 0.5 A g), excellent rate performance (70.1% of capacitance retention at high current density of 10 A g) and a remarkable long-term cycling stability (about 99% capacitance retention after 9000 cycles) in the aqueous electrolyte of 6 M KOH. Meanwhile, assembled as-prepared sample into symmetrical supercapacitor, the HPC-900 provides a high energy and power density, with 8.6 Wh kgand 426.7 W kgin 1 M NaSO, respectively. The HPCs prepared based on castor oil show high potential for the electrode materials of supercapacitors.
通过蓖麻油/MgO固体的直接热解可以轻松合成一种生物质基分级多孔碳(HPCs),其中固体可通过将适量的MgO混入蓖麻油中制备。对所得的HPCs的形态、微观结构、相结构、织构性质、表面元素组成和热稳定性进行了研究。结果表明,HPCs属于一种高石墨化、类石墨烯且具有高比表面积和宽孔径分布的泡沫碳材料。在900℃下获得的HPC(HPC-900)表现出最高比表面积为1013.17 mg以及更合理的孔径分布。在6 M KOH水性电解质中,无需导电剂,HPC-900展现出最大电容(在0.5 A g时为340 F g)、优异的倍率性能(在10 A g的高电流密度下电容保持率为70.1%)以及出色的长期循环稳定性(9000次循环后电容保持率约为99%)。同时,将制备好的样品组装成对称超级电容器,HPC-900分别在1 M NaSO中提供了8.6 Wh kg和426.7 W kg的高能量和功率密度。基于蓖麻油制备的HPCs在超级电容器电极材料方面显示出巨大潜力。