Enhancing electrochemical capacitor performance of N-doped tannin-derived carbons by hydrothermal treatment in ammonia

被引:1
|
作者
Pinto-Burgos, Oscar [1 ,2 ]
Castro-Gutierrez, Jimena
Poon, Po Shan [2 ]
Izquierdo, Maria T. [4 ]
Celzard, Alain [3 ,5 ]
Fierro, Vanessa [3 ]
Matos, Juan [6 ]
机构
[1] Univ Concepcion, Fac Ingn, Dept Ingn Quim, Barrio Univ S-N, Concepcion, Chile
[2] Barrio Univ s n, Univ Concepc, UD, Barrio Univ s-n, Concepcion, Chile
[3] Univ Lorraine, CNRS, IJL, F-88000 Epinal, France
[4] ICB CSIQ, Inst Carboquim, Miguel Luesma Castan 4, E-50018 Zaragoza, Spain
[5] Inst Univ France IUF, F-75005 Paris, France
[6] Univ Autonoma Chile, Fac Arquitectura Construcc & Medio Ambiente, Unidad Cambio Climat & Medio Ambiente UCCMA, Inst Iberoamericano Desarrollo Sostenible IIDS, Temuco 4780000, Chile
关键词
Tannin; Capacitance; Nitrogen doping; Carbon materials; Sustainable energy; DOUBLE-LAYER CAPACITANCE; ACTIVATED CARBONS; FUNCTIONAL-GROUPS; POROUS CARBON; XPS SPECTRA; PORE-SIZE; NITROGEN; SURFACE; SUPERCAPACITORS; COMPOSITES;
D O I
10.1016/j.jpowsour.2024.234332
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
This study demonstrates that ammonia concentration when doping carbons using hydrothermal treatment has crucial impact on textural properties. The latter translates into an improvement of the electrochemical performance of carbon materials, when used into electrochemical capacitors, especially at high-rate performance. Nitrogen-doped carbons were synthesized by subjecting tannin to hydrothermal carbonization in ammonia solutions of varying concentrations. After carbonization and CO2 activation, the as-produced activated carbons (ACs) were tested as electrodes for electrochemical capacitors in symmetric configuration using 1 M H2SO4 as aqueous electrolyte. Interestingly, ammonia concentration during the hydrothermal synthesis step did not significantly affect the final N content (ca. 3 and 4 at. %) nor the nitrogen and oxygen functionalities on the surface. However, the use of ammonia had crucial impact on the textural properties developed by CO2 activation, and therefore on the electrochemical performance of the ACs. The best-performing N-doped AC showed specific electrode capacitance values, based on carbon material, of 212 F g(-1) at 0.5 A g(-1) and outstanding capacitance retention of ca. 71 % at 40 A g(-1). It also showed high cycling stability, with capacitance retention of ca. 96 % after 30,000 cycles. Furthermore, this AC outperformed similar reported materials, achieving a specific energy of 4.6 W h kg(-1) at 12.1 kW kg(-1).
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页数:11
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