Mesoporous graphite felt electrode prepared via thermal oxidative etching on all-vanadium redox flow batteries

被引:0
|
作者
Park, Seung Hwa [1 ,2 ]
Ha, Jinho [3 ]
Kim, Dong Wook [1 ,2 ]
Hwang, Chihyun [2 ]
Choi, Jung-Il [3 ,4 ]
Park, Ho Seok [1 ]
Kim, Youngkwon [2 ]
机构
[1] School of Chemical Engineering, Sungkyunkwan University, Gyeonggi-do, Suwon,16419, Korea, Republic of
[2] Advanced Batteries Research Center, Korea Electronics Technology Institute, Gyeonggi-do, Seongnam,13509, Korea, Republic of
[3] School of Mathematics and Computing (Computational Science and Engineering), Yonsei University, Seoul,03722, Korea, Republic of
[4] Department of Battery Engineering, Yonsei University, Seoul,03722, Korea, Republic of
来源
关键词
Vanadium redox flow batteries (VRFBs) have attracted considerable attention due to their outstanding safety; design flexibility; and high performance. However; the severe polarization and the limited activity of carbon-based electrodes confine VRFB applications to large-scale energy storage systems. This study introduces a facile method for preparing mesoporous graphite felt (mp-GF) via thermal decomposition; employing a manganese oxide coating derived from alkylammonium permanganate. The resulting mp-GF offers mesopores; abundant oxygen-containing functional groups; and Mn3O4 catalysts; enhancing electrochemical activity and electrolyte utilization. VRFBs assembled with mp-GF electrodes achieved a voltage efficiency of 83.1 % and an energy efficiency of 80 % at a high current density of 200 mA cm−2; outperforming the 78.3 % and 75.3 % efficiency of thermally treated graphite felt (TGF); the conventional electrode in VRFBs. We further investigate the dynamics of VRFBs using an electrochemical model that incorporates parameter identification based on the measured charge–discharge curves. The identified specific surface area of mp-GF is approximately 30 times greater than that of thermal-treated graphite felt. Consequently; the cell with mp-GF operates within a broader state of charge (SOC) range and at lower overpotentials. © 2024 Elsevier B.V;
D O I
暂无
中图分类号
学科分类号
摘要
Journal article (JA)
引用
收藏
相关论文
共 50 条
  • [21] Roughened Graphite Felt Electrode with Enhanced Electrochemical Activity for Vanadium Redox Flow Batteries
    Chen, Lei
    Zhou, Haixia
    Chu, Youqun
    Tong, Shaoping
    INTERNATIONAL JOURNAL OF ELECTROCHEMICAL SCIENCE, 2019, 14 (06): : 5408 - 5421
  • [22] Vanadium redox flow batteries using new mesoporous nitrogen-doped carbon coated graphite felt electrode
    Ji, Jungyeon
    Noh, Chanho
    Shin, Mingyu
    Oh, Seunghye
    Chung, Yongjin
    Kwon, Yongchai
    Kim, Do-Heyoung
    APPLIED SURFACE SCIENCE, 2023, 611
  • [23] Study on Hydrogen Evolution Reaction at a Graphite Electrode in the All-Vanadium Redox Flow Battery
    Chen, Fuyu
    Liu, Jianguo
    Chen, Hui
    Yan, Chuanwei
    INTERNATIONAL JOURNAL OF ELECTROCHEMICAL SCIENCE, 2012, 7 (04): : 3750 - 3764
  • [24] High-power nitrided TiO2 carbon felt as the negative electrode for all-vanadium redox flow batteries
    Vazquez-Galvan, J.
    Flox, C.
    Jervis, J. R.
    Jorge, A. B.
    Shearing, P. R.
    Morante, J. R.
    CARBON, 2019, 148 : 91 - 104
  • [25] An ultra-stable reference electrode for scaled all-vanadium redox flow batteries
    Huang, Qian
    Song, Chaojie
    Crawford, Alasdair
    Jiang, Zhengming
    Platt, Alison
    Fatih, Khalid
    Bock, Christina
    Reed, David
    RSC ADVANCES, 2022, 12 (50) : 32173 - 32184
  • [26] In Situ Reliability Investigation of All-Vanadium Redox Flow Batteries by a Stable Reference Electrode
    Huang, Qian
    Li, Bin
    Song, Chaojie
    Jiang, Zhengming
    Platt, Alison
    Fatih, Khalid
    Bock, Christina
    Jang, Darren
    Reed, David
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2020, 167 (16)
  • [27] Highly Graphitic, Mesoporous Carbon Materials as Electrocatalysts for Vanadium Redox Reactions in All-Vanadium Redox-Flow Batteries
    Ruemmler, Stefan
    Steimecke, Matthias
    Schimpf, Sabine
    Hartmann, Mark
    Foerster, Stefan
    Bron, Michael
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2018, 165 (11) : A2510 - A2518
  • [28] Quantifying the Impact of Oxidative Treatments on Electrode Overpotentials in the All-Vanadium Redox Flow Battery
    Bachman, Ridge M.
    Owuor, Peter Samora
    Khan, Abdullah
    Hall, Derek M.
    CHEMELECTROCHEM, 2025, 12 (07):
  • [29] Understanding the redox reaction mechanism of vanadium electrolytes in all-vanadium redox flow batteries
    Choi, Chanyong
    Noh, Hyungjun
    Kim, Soohyun
    Kim, Riyul
    Lee, Juhyuk
    Heo, Jiyun
    Kim, Hee-Tak
    JOURNAL OF ENERGY STORAGE, 2019, 21 : 321 - 327
  • [30] Investigation of Ir-modified carbon felt as the positive electrode of an all-vanadium redox flow battery
    Wang, W. H.
    Wang, X. D.
    ELECTROCHIMICA ACTA, 2007, 52 (24) : 6755 - 6762