Significant performance enhancement of Zn-ion hybrid supercapacitors based on microwave-assisted pyrolyzed active carbon via synergistic effect of NaHCO3 activation and CNT networks

被引:0
|
作者
Chen, Zhuo [1 ]
Qu, Qiang [1 ]
Chi, Zhi-Zhen [3 ]
Hu, Yang [4 ]
Zhu, Lin [1 ]
Zhu, Ming-Qiang [1 ,2 ]
机构
[1] Northwest A&F Univ, Coll Mech & Elect Engn, Yangling 712100, Peoples R China
[2] Northwest A&F Univ, Northwest Res Ctr Rural Renewable Energy Exploitat, Yangling 712100, Shaanxi, Peoples R China
[3] Northwest A&F Univ, Coll Forestry, Yangling 712100, Peoples R China
[4] Northwest A&F Univ, Coll Agr, Yangling 712100, Peoples R China
关键词
Microwave-assisted carbonization; Nanopores; Activation; Zinc-ion hybrid supercapacitors (ZIHSCs); Carbon nanotubes; ELECTRODES;
D O I
10.1016/j.mtsust.2024.100977
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Zinc-ion hybrid supercapacitors (ZIHSCs) represents a promising technological approach for large-scale energy storage with the combined advantages of supercapacitors and zinc-ion batteries. Unfortunately, it is still challengeable to quickly fabricate low-cost, high-performance carbonaceous cathode materials at relatively low temperature. To address such issues, herein, taking waste Eucommia ulmoides Oliver (EUO) wood as an example, we present a novel microwave-assisted carbonization (MWC) approach at relatively low temperature to quickly prepare active carbon, and we present a synergistic strategy to significantly enhance the electrochemical performance by introducing sodium bicarbonate activation (SA) and constructing conductive carbon nanotubes (CNT) networks. The MWC-SA@CNT hybrid exhibits outstanding specific capacitance of 344.2 F/g at 0.2 A/g within three-electrode system, much better than conventional high-temperature pyrolyzed AC, MWC carbon, and MWC-SA carbon. The superior performance of MWC-SA@CNT can be attributed to the synergistic effect of its large specific surface area of 1102.7 m(2)/g, high mesoporous percentage of 53.5%, and rich -OH and CO groups due to microwave-assisted carbonization and sodium bicarbonate activation, and rich electron transport paths due to the presence of CNT networks. Furthermore, ZIHSCs assembled by MWC-SA@CNT cathode could delivers impressive performance with excellent capacity (194.37 mA h/g at current density of 1 A/g), energy density (142.30 Wh/kg), and durability (capacitance retention rate of 97.65% after 5000 cycles). This work offers a rapid and low-temperature method for preparing wood-based active carbon with rich nanopores and strong conductivity to improve performance of Zinc ion storage.
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页数:10
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