超级电容器
有机溶剂
碳化
木质素
材料科学
电容
碳纤维
化学工程
重量分析
活性炭
电化学
聚合物
电极
化学
扫描电子显微镜
有机化学
复合材料
物理化学
吸附
复合数
工程类
作者
Geon Hae Lim,Jae‐Won Lee,Junho Choi,Yun Chan Kang,Kwang Chul Roh
标识
DOI:10.1016/j.matchemphys.2022.126073
摘要
Lignin is an organic polymer that is a key structural material in most plant support tissues. However, only 2% of lignin produced worldwide is commercially utilized; while the remainder is burned as fuel. It has been proven that a high carbon content and extensively bridged polymer structure are useful in creating high-value products. Herein, larch and the lignin obtained using the Klason and organosolv methods were converted into activated carbon samples for use as supercapacitors. This lignin showed higher values in carbonization yield. All other activated samples exhibited similar physical and electrochemical properties, pore structures, and surface areas. Transmission electron microscopy revealed that all samples had partially graphitic structures, which provide electron pathways and energy storage capabilities. Lignin-derived activated carbon shows the highest gravimetric specific capacitance (131 F g−1, at 1 mA cm−2), specific capacitance retention ratios of cycling stability (99% at 10 mA cm−2 for 10,000 cycles), and rate capability (91% at 30 mA cm−2). These results suggest high yield, good cycling stability, high capacitance, and eco-friendly material for supercapacitor electrodes.
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