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Pyrolysis of Enzymolysis-Treated Wood: Hierarchically Assembled Porous Carbon Electrode for Advanced Energy Storage Devices
Authors:Feng Wang  Jun Young Cheong  Jiyoung Lee  Jaewan Ahn  Gaigai Duan  Huiling Chen  Qian Zhang  Il-Doo Kim  Shaohua Jiang
Affiliation:1. Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, International Innovation Center for Forest Chemicals and Materials, College of Materials Science and Engineering, Nanjing Forestry University, Nanjing, 210037 China;2. Department of Materials Science and Engineering, Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-gu, Daejeon, 34141 Republic of Korea;3. College of Science, Nanjing Forestry University, Nanjing, 210037 China
Abstract:Designing energy storage devices from thick carbon electrodes with high areal/volumetric energy density via a simple and green way is very attractive but still challenging. Cellulose, as an excellent precursor for thick carbon electrodes with abundant sources and low cost, is usually activated by a chemical activator and pyrolysis route to achieve high electrochemical performance. However, there are still some problems to be addressed, such as the harsh activation conditions, easy collapse of porous structures, and the high cost. Herein, a 3D self-supporting thick carbon electrode derived from wood-based cellulose is proposed for high areal and volumetric energy density of supercapacitor from a mild, simple, and green enzymolysis treatment. Benefiting from the high specific surface area (1418 m2 g?1) and abundant active sites on the surface of wood-derived hierarchically porous structures and enzymolysis-induced micropores and mesopores, the assembled symmetry supercapacitor from the thick carbon electrode can realize the high areal/volumetric energy density of 0.21 mWh cm?2/0.99 mWh cm?3 with excellent stability of 86.58% after 15 000 long-term cycles at 20 mA cm?2. Significantly, the simple and universal strategy to design material with high specific surface area, provides a new research idea for realizing multi-functional application.
Keywords:cellulase  energy density  hierarchical pore structures  supercapacitors  thick electrodes
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