Thin Reinforced Anion-Exchange Membranes for Non-Aqueous Redox Flow Battery Employing Fe/Co-Metal Complex Redox Species

被引:2
|
作者
Song, Hyeon-Bee [1 ]
Kim, Do-Hyeong [1 ]
Lee, Myung-Jin [2 ]
Kang, Moon-Sung [1 ]
机构
[1] Sangmyung Univ, Coll Engn, Dept Green Chem Engn, Cheonan 31066, South Korea
[2] Samsung Adv Inst Technol, Battery Mat Tech Unit, Suwon 16678, South Korea
来源
BATTERIES-BASEL | 2024年 / 10卷 / 01期
基金
新加坡国家研究基金会;
关键词
non-aqueous redox flow batteries; pore-filled anion-exchange membranes; ionic liquid monomer; porous polyethylene support; in situ photopolymerization; metal polypyridyl complexes; ELECTROLYTES; PERFORMANCE; CHALLENGES; ANOLYTE;
D O I
10.3390/batteries10010009
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Non-aqueous redox flow batteries (NARFBs) have been attracting much attention because they can significantly increase power and energy density compared to conventional RFBs. In this study, novel pore-filled anion-exchange membranes (PFAEMs) for application to a NAPFB employing metal polypyridyl complexes (i.e., Fe(bpy)32+/Fe(bpy)33+ and Co(bpy)32+/Co(bpy)33+) as the redox species are successfully developed. A porous polyethylene support with excellent solvent resistance and mechanical strength is used for membrane fabrication. The PFAEMs are prepared by filling an ionic liquid monomer containing an imidazolium group and a crosslinking agent into the pores of the support film and then performing in situ photopolymerization. As a result, the prepared membranes exhibit excellent mechanical strength and stability in a non-aqueous medium as well as high ion conductivity. In addition, a low crossover rate for redox ion species is observed for the prepared membranes because they have relatively low swelling characteristics in non-aqueous electrolyte solutions and low affinity for the metal-complex redox species compared to a commercial membrane. Consequently, the PFAEM is revealed to possess superior battery performance than a commercial membrane in the NARFB tests, showing high energy efficiency of about 85% and stable operation for 100 cycles.
引用
收藏
页数:18
相关论文
共 39 条
  • [1] Pore-filled anion-exchange membranes for non-aqueous redox flow batteries with dual-metal-complex redox shuttles
    Kim, Do-Hyeong
    Seo, Seok-Jun
    Lee, Myung-Jin
    Park, Jin-Soo
    Moon, Seung-Hyeon
    Kang, Yong Soo
    Choi, Young-Woo
    Kang, Moon-Sung
    JOURNAL OF MEMBRANE SCIENCE, 2014, 454 : 44 - 50
  • [2] Membranes in non-aqueous redox flow battery: A review
    Yuan, Jiashu
    Pan, Zheng-Ze
    Jin, Yun
    Qiu, Qianyuan
    Zhang, Cuijuan
    Zhao, Yicheng
    Li, Yongdan
    JOURNAL OF POWER SOURCES, 2021, 500
  • [3] Modification of anion-exchange membranes for vanadium redox flow battery applications
    Mohammadi, T
    Skyllas-Kazacos, M
    JOURNAL OF POWER SOURCES, 1996, 63 (02) : 179 - 186
  • [4] Structural effects of anion exchange composite membranes in non-aqueous redox flow batteries
    Kim, Dongyoung
    Song, Jungho
    Won, Jongok
    JOURNAL OF MEMBRANE SCIENCE, 2018, 564 : 523 - 531
  • [5] Counter anion effects in anion exchange membrane-fabricated non-aqueous vanadium redox flow battery
    Son, Pyeong Soo
    Oh, Min-Seok
    Ye, Jun-Hee
    Choi, Seong-Ho
    ANALYTICAL SCIENCE AND TECHNOLOGY, 2015, 28 (05): : 341 - 346
  • [6] Characterization of Commercial Membranes for Non-aqueous Vanadium Redox Flow Battery
    Sung, Ki-Won
    Shin, Sung-Hee
    Moon, Seung-Hyeon
    KOREAN CHEMICAL ENGINEERING RESEARCH, 2013, 51 (05): : 615 - 621
  • [7] Phenyl Acrylate-Based Cross-Linked Anion Exchange Membranes for Non-aqueous Redox Flow Batteries
    Mazumder, Md. Motiur R.
    Jadhav, Rohit G.
    Minteer, Shelley D.
    ACS MATERIALS AU, 2023, 3 (05): : 557 - 568
  • [8] Crosslinked anion exchange membranes prepared from poly(phenylene oxide) (PPO) for non-aqueous redox flow batteries
    Li, Yun
    Sniekers, Jeroen
    Malaquias, Joao C.
    Van Goethem, Cedric
    Binnemans, Koen
    Fransaer, Jan
    Vankelecom, Ivo F. J.
    JOURNAL OF POWER SOURCES, 2018, 378 : 338 - 344
  • [9] A model study on effects of vanadium ion diffusion through ion exchange membranes in a non-aqueous redox flow battery
    Lee, Dohyeon
    Ryu, Seungbo
    Shin, Sung-Hee
    Kim, Jae-Hun
    Moon, Seung-Hyeon
    JOURNAL OF RENEWABLE AND SUSTAINABLE ENERGY, 2019, 11 (03)
  • [10] A higher voltage Fe(II) bipyridine complex for non-aqueous redox flow batteries
    Cammack, Claudina X.
    Pratt, Harry D., III
    Small, Leo J.
    Anderson, Travis M.
    DALTON TRANSACTIONS, 2021, 50 (03) : 858 - 868