Supercapacitor carbon electrodes with high capacitance

被引:39
作者
Volfkovich, Y. M. [1 ]
Bograchev, D. A. [1 ]
Mikhalin, A. A. [1 ]
Bagotsky, V. S. [1 ]
机构
[1] Russian Acad Sci, AN Frumkin Inst Phys Chem & Electrochem, Moscow, Russia
关键词
Activated carbon; Hydrogen intercalation; Method of standard contact porosimetry; Pseudocapacitance; Solid-phase diffusion; C6H; ELECTROCHEMICAL CHARACTERISTICS; POROUS STRUCTURE; ENERGY-STORAGE; COMPOSITES; NANOTUBE; SURFACE; INTERCALATION; MACROKINETICS; MICROKINETICS; PERFORMANCES;
D O I
10.1007/s10008-013-2271-4
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Electrochemical behavior of electrodes on the basis of CH900-20 activated carbon (AC) cloth has been studied in concentrated sulfuric acid solution. Cyclic voltammetric curves have been studied in the reversibility range (from 0.1 to 0.9 V RHE) and in the deep cathodic charging potential range (from -0.8 to 1 V RHE). It has been shown that electric double layer (EDL) charging occurs in the reversibility range, while faradaic processes of hydrogen intercalation into AC carbon take place in the range of negative potentials (a dagger 0.1 V). The intercalation process is governed by slow solid-phase hydrogen diffusion. The specific charge value grows at an increase in concentrated sulfuric acid solution. The mechanism of double intercalation of sulfuric acid and hydrogen into the AC material is suggested. On the basis of the reached specific discharge capacitance of 1,560 C/g (or 1,110 F/g) and Faraday's law, it has been concluded that the compound of C6H is formed in the limiting case of deepest cathodic charging. The obtained data have been used in a mathematical charge-discharge model for an AC electrode taking into account the EDL charging and the hydrogen intercalation. The galvanostatic recharge curves have been calculated in the diapason of currents by the developed model.
引用
收藏
页码:1351 / 1363
页数:13
相关论文
共 50 条
  • [31] Carbon-based composite materials for supercapacitor electrodes: a review
    Borenstein, Arie
    Hanna, Ortal
    Attias, Ran
    Luski, Shalom
    Brousse, Thierry
    Aurbach, Doron
    JOURNAL OF MATERIALS CHEMISTRY A, 2017, 5 (25) : 12653 - 12672
  • [32] Free standing hollow carbon nanofiber mats for supercapacitor electrodes
    Shilpa
    Sharma, Ashutosh
    RSC ADVANCES, 2016, 6 (82): : 78528 - 78537
  • [33] Facile synthesis and high volumetric capacitance of holey graphene film for supercapacitor electrodes with optimizing preparation conditions
    Zhu, Benshuo
    Li, Hua
    Chen, Yujie
    Liu, Hezhou
    SOFT MATERIALS, 2022, 20 (02) : 137 - 148
  • [34] Green Synthesis of Porous Honeycomblike Carbon Materials for Supercapacitor Electrodes
    Sun, Kang
    Li, Jihui
    Wu, Dichao
    Jiang, Jianchun
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2020, 59 (32) : 14288 - 14295
  • [35] Capacitance decay mechanism of vanadium nitride supercapacitor electrodes in KOH electrolytes
    Li, Xiu-Li
    Song, Hao
    Zhang, Yong-Hui
    Ren, Yu-Lei
    Guo, Qi-Fei
    Tang, Zi-Huan
    Li, Zhuo
    Gao, Biao
    Chu, Paul K.
    Huo, Kai-Fu
    RARE METALS, 2025, : 3909 - 3919
  • [36] Hierarchical Porous Carbon with Interconnected Ordered Pores from Biowaste for High-Performance Supercapacitor Electrodes
    Bai, Xiaoxia
    Wang, Zhe
    Luo, Jingying
    Wu, Weiwei
    Liang, Yanping
    Tong, Xin
    Zhao, Zhenhuan
    NANOSCALE RESEARCH LETTERS, 2020, 15 (01):
  • [37] Study on the Capacitance Performance of Activated Carbon Material for Supercapacitor
    Zhang, Shengli
    Song, Yanhua
    Li, Xiaogang
    Li, Wei
    ADVANCED MATERIALS, PTS 1-4, 2011, 239-242 : 797 - 800
  • [38] Simple and direct synthesis of ZnO decorated multi-walled carbon nanotube for supercapacitor electrodes
    Lee, Kwang Se
    Shin, Min Jae
    Park, Chan Woo
    Kim, Jong-Duk
    COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2018, 538 : 23 - 27
  • [39] Capacitance Optimization of Planar Carbon-based Supercapacitor
    Jitropas, Ukrit
    Yunphuttha, Chumphol
    Siriroj, Sumeth
    Meevasana, Worawat
    CHIANG MAI JOURNAL OF SCIENCE, 2020, 47 (04): : 607 - 613
  • [40] A high-capacitance solid-state supercapacitor based on free-standing film of polyaniline and carbon particles
    Khosrozadeh, A.
    Xing, M.
    Wang, Q.
    APPLIED ENERGY, 2015, 153 : 87 - 93