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Effect of pore size distribution of coal-based activated carbons on double layer capacitance
被引:300
作者:
Gryglewicz, G
Machnikowski, J
Lorenc-Grabowska, E
Lota, G
Frackowiak, E
机构:
[1] Wroclaw Univ Technol, Inst Chem & Technol Petr & Coal, PL-50344 Wroclaw, Poland
[2] Poznan Tech Univ, Inst Chem & Tech Electrochem, PL-60965 Poznan, Poland
关键词:
electrochemical capacitor;
activated carbon;
coal;
micro- and mesoporosity;
D O I:
10.1016/j.electacta.2004.07.045
中图分类号:
O646 [电化学、电解、磁化学];
学科分类号:
081704 ;
摘要:
A series of coal-based activated carbons representing a wide range of mesopore content, from 16.7 to 86.9%, were investigated as an electrode in electric double layer capacitors (EDLCs) in 1 mol l(-1) H(2)SO(4) and 6 mol l(-1) KOH electrolytic solutions. The activated carbons (ACs) used in this study were produced from chemically modified lignite, subbituminous and bituminous coals by carbonization and subsequent activation with steam. The BET surface area of ACs studied ranged from 340 to 1270 m(2) g(-1). The performance of ACs as EDLC electrodes was characterized using voltammetry, galvanostatic charge/discharge and impedance spectroscopy measurements. For the carbons with surface area up to 1000 m(2) g(-1), the higher BET surface area the higher specific capacitance (Fg(-1)) for both electrolytes. The surface capacitance (muF cm(-2)) increases also with the mesopore content. The optimum range of mesopore content in terms of the use of ACs studied for EDLCs was found to be between 20 and 50%. A maximum capacitance exceeding 160 F g(-1) and a relatively high surface capacitance about 16 muF cm(-2) measured in H(2)SO(4) solution were achieved for the AC prepared from a sulfonated subbituminous coal. This study shows that the ACs produced from coals exhibit a better performance as an electrode material of EDLC in H(2)SO(4) than in KOH electrolytic solutions. For KOH, the capacitance per unit mesopore surface is slightly lower than that referred to unit micropore surface (9.1 versus 10.1 muF cm-2). However, in the case of H(2)SO(4) the former capacitance is double and even higher compared with the latter (23.1 versus 9.8 muF cm(-2)). On the other hand, the capacitance per micropore surface area is the same in both electrolytes used, about 10.0 muFcm(-2). (C) 2004 Elsevier Ltd. All rights reserved.
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页码:1197 / 1206
页数:10
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