Enhanced Cyclability of Organic Aqueous Redox Flow Battery by Control of Electrolyte pH Value

被引:2
作者
Xu Junhui [1 ]
Wu Yi [1 ]
Wang Hui [1 ]
Dan Li [1 ]
Chen, Liuping [1 ]
机构
[1] Chinasalt Jintan Co Ltd, Mine Salt Comprehens Utilizat Ctr Jiangsu Prov, Changzhou 213200, Peoples R China
关键词
Redox flow battery; Organic active species; pH; DIFFERENTIAL PH; PROSPECTS; PROGRESS; STORAGE;
D O I
10.1246/cl.200967
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
An organic viologens/TEMPO-SO3K aqueous flow battery with neutral NaCl solution as supporting electrolyte was proposed, and the battery cycling process was further explored. During the charging/discharing process, the side reactions, such as hydrogen evolution reaction (HER), chlorine evolution reaction (CER) and oxygen evolution reaction (OER), inevitably occurred and changed the pH value of electrolyte, further influencing the redox reaction activity of active material. To balance the pH change, addition of alkaline solution to the anolyte was proposed. A significant enhancement of the cycling stability was observed, and only 5.4% capacity decay was presented after 1200 cycles.
引用
收藏
页码:1301 / 1303
页数:3
相关论文
共 26 条
  • [1] A Sulfonate-Functionalized Viologen Enabling Neutral Cation Exchange, Aqueous Organic Redox Flow Batteries toward Renewable Energy Storage
    DeBruler, Camden
    Hu, Bo
    Moss, Jared
    Luo, Jian
    Liu, T. Leo
    [J]. ACS ENERGY LETTERS, 2018, 3 (03): : 663 - 668
  • [2] Designer Two-Electron Storage Viologen Anolyte Materials for Neutral Aqueous Organic Redox Flow Batteries
    DeBruler, Camden
    Hu, Bo
    Moss, Jared
    Liu, Xuan
    Luo, Jian
    Sun, Yujie
    Liu, T. Leo
    [J]. CHEM, 2017, 3 (06): : 961 - 978
  • [3] Molecular engineering of organic electroactive materials for redox flow batteries
    Ding, Yu
    Zhang, Changkun
    Zhang, Leyuan
    Zhou, Yangen
    Yu, Guihua
    [J]. CHEMICAL SOCIETY REVIEWS, 2018, 47 (01) : 69 - 103
  • [4] Electrical Energy Storage for the Grid: A Battery of Choices
    Dunn, Bruce
    Kamath, Haresh
    Tarascon, Jean-Marie
    [J]. SCIENCE, 2011, 334 (6058) : 928 - 935
  • [5] Anthraquinone Derivatives in Aqueous Flow Batteries
    Gerhardt, Michael R.
    Tong, Liuchuan
    Gomez-Bombarelli, Rafael
    Chen, Qing
    Marshak, Michael P.
    Galvin, Cooper J.
    Aspuru-Guzik, Alan
    Gordon, Roy G.
    Aziz, Michael J.
    [J]. ADVANCED ENERGY MATERIALS, 2017, 7 (08)
  • [6] Hu B., 2019, ANGEW CHEM-GER EDIT, V131, P16782
  • [7] Improved radical stability of viologen anolytes in aqueous organic redox flow batteries
    Hu, Bo
    Tang, Yijie
    Luo, Jian
    Grove, Grant
    Guo, Yisong
    Liu, T. Leo
    [J]. CHEMICAL COMMUNICATIONS, 2018, 54 (50) : 6871 - 6874
  • [8] An aqueous, polymer-based redox-flow battery using non-corrosive, safe, and low-cost materials
    Janoschka, Tobias
    Martin, Norbert
    Martin, Udo
    Friebe, Christian
    Morgenstern, Sabine
    Hiller, Hannes
    Hager, Martin D.
    Schubert, Ulrich S.
    [J]. NATURE, 2015, 527 (7576) : 78 - 81
  • [9] Performance Optimization of Differential pH Quinone-Bromide Redox Flow Battery
    Khataee, Amirreza
    Drazevic, Emil
    Catalano, Jacopo
    Bentien, Anders
    [J]. JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2018, 165 (16) : A3918 - A3924
  • [10] Differential pH as a method for increasing cell potential in organic aqueous flow batteries
    Khataee, Amirreza
    Wedege, Kristina
    Drazevic, Emil
    Bentien, Anders
    [J]. JOURNAL OF MATERIALS CHEMISTRY A, 2017, 5 (41) : 21875 - 21882