College of Materials and Environmental Engineering, Hangzhou Dianzi University, Hangzhou, 310018, People's Republic of China.
College of Materials and Environmental Engineering, Hangzhou Dianzi University, Hangzhou, 310018, People's Republic of China.
Carbohydr Polym. 2017 Oct 1;173:321-329. doi: 10.1016/j.carbpol.2017.06.004. Epub 2017 Jun 2.
Chitin biomass has received much attention as an amino-functional polysaccharide precursor for synthesis of carbon materials. Rich nitrogen and oxygen dual-doped porous carbon derived from cicada slough (CS), a renewable biomass mainly composed of chitin, was synthesized and employed as electrode materials for electrochemical capacitors, for the first time ever. The cicada slough-derived carbon (CSC) was prepared by a facile process via pre-carbonization in air, followed by KOH activation. The weight ratio of KOH and char plays an important role in fabricating the microporous structure and tuning the surface chemistry of CSC. The obtained CSC had a large specific surface area (1243-2217mg), fairly high oxygen content (28.95-33.78 at%) and moderate nitrogen content (1.47-4.35 at%). The electrochemical performance of the CS char and CSC as electrodes for capacitors was evaluated in a three-electrode cell configuration with 6M KOH as the electrolyte. Electrochemical studies showed that the as-prepared CSC activated at the KOH-to-char weight ratio of 2 exhibited the highest specific capacitance (266.5Fg at a current density of 0.5Ag) and excellent rate capability (196.2Fg remained at 20Ag) and cycle durability. In addition, the CSC-2-based symmetrical device possessed the desirable energy density and power density of about 15.97Whkg and 5000Wkg at 5Ag, respectively.
几丁质生物质作为合成碳材料的氨基功能多糖前体受到了广泛关注。蝉蜕(CS)是一种可再生生物质,主要由几丁质组成,其富含氮和氧的双掺杂多孔碳首次被合成并用作电化学电容器的电极材料。蝉蜕衍生碳(CSC)是通过在空气中进行预碳化,然后用 KOH 活化的简便工艺制备的。KOH 与炭的重量比在制备微孔结构和调整 CSC 的表面化学方面起着重要作用。所得到的 CSC 具有大的比表面积(1243-2217mg),相当高的氧含量(28.95-33.78 at%)和适中的氮含量(1.47-4.35 at%)。CS 炭和 CSC 作为电容器电极的电化学性能在三电极电池配置中进行了评估,其中 6M KOH 用作电解质。电化学研究表明,在 KOH 与炭的重量比为 2 时,所制备的 CSC 具有最高的比电容(在 0.5Ag 的电流密度下为 266.5Fg)和优异的倍率性能(在 20Ag 时仍保持 196.2Fg)和循环耐久性。此外,基于 CSC-2 的对称器件在 5Ag 时分别具有约 15.97Whkg 和 5000Wkg 的理想能量密度和功率密度。