

Xi J, Li Z, Yu L, Yin B, Wang L, Liu L, Qiu X, Chen L (2015) Effect of degree of sulfonation and casting solvent on sulfonated poly (ether ether ketone) membrane for vanadium redox flow battery. Yan X, Sun J, Gao L, Zheng W, Dai Y, Ruan X, He G (2018) A novel long-side-chain sulfonated poly (2, 6-dimethyl-1, 4-phenylene oxide) membrane for vanadium redox flow battery. Xu W, Li X, Cao J, Yuan Z, Zhang H (2014) Morphology and performance of poly (ether sulfone)/sulfonated poly (ether ether ketone) blend porous membranes for vanadium flow battery application. Mu D, Yu L, Liu L, Xi J (2017) Rice paper reinforced sulfonated poly (ether ether ketone) as low-cost membrane for vanadium flow batteries. Nibel O, Schmidt TJ, Gubler L (2016) Bifunctional ion-conducting polymer electrolyte for the vanadium redox flow battery with high selectivity. Kim YS, Oh SH, Kim E et al (2018) Iron-chrome crossover through Nafion membrane in iron-chrome redox flow battery. J Membr Sci 544:98–107īokun VC, Kritskaya DA, Abdrashitov EF, Ponomarev AN, Sanginov EA, Yaroslavtsev AB, Dobrovol’skii YA (2015) Proton conductivity of perfluorinated and nanocomposite ion exchange membranes in aqueous and water-methanol solutions. Yan X, Zhang C, Dai Y, Zheng W, Ruan X, He G (2017) A novel imidazolium-based amphoteric membrane for high-performance vanadium redox flow battery. Teng X, Yu C, Wu X, Dong Y, Gao P, Hu H, Zhu Y, Dai J (2018) PTFE/SPEEK/PDDA/PSS composite membrane for vanadium redox flow battery application.

Yu L, Xi J (2016) Durable and efficient PTFE sandwiched SPEEK membrane for vanadium flow batteries.

Zhao YY, Zhang HM, Xiao CH et al (2018) Highly selective charged porous membranes with improved ion conductivity. Zhao Y, Lu W, Yuan Z et al (2017) Advanced charged porous membranes with flexible internal crosslinking structures for vanadium flow batteries. Yuan Z, Zhang H, Li X (2018) Ion conducting membranes for aqueous flow battery systems. Lu W, Yuan Z, Zhao Y, Qiao L, Zhang H, Li X (2018) Advanced porous PBI membranes with tunable performance induced by the polymer-solvent interaction for flow battery application. Wang N, Liu S (2013) Preparation and properties of separation membranes for vanadium redox flow battery. Hollax E, Cheng DS (1985) The influence of oxidative pretreatment of graphite electrodes on the catalysis of the Cr 3+/Cr 2+ and Fe 3+/Fe 2+ redox reactions. Zhang H, Tan Y, Li JY et al (2017) Studies on properties of rayon-and polyacrylonitrile-based graphite felt electrodes affecting Fe/Cr redox flow battery performance. Zeng YK, Zhao TS, Zhou XL, Zeng L, Wei L (2016) The effects of design parameters on the charge-discharge performance of iron-chromium redox flow batteries. Zeng YK, Li FH, Lu F et al (2019) A hierarchical interdigitated flow field design for scale-up of high-performance redox flow batteries. Zeng YK, Zhou XL, An L, Wei L, Zhao TS (2016) A high-performance flow-field structured iron-chromium redox flow battery. Kim KJ, Park M-S, Kim Y-J, Kim JH, Dou SX, Skyllas-Kazacos M (2015) A technology review of electrodes and reaction mechanisms in vanadium redox flow batteries.
