Moon Ha-Neul, Song Hyeon-Bee, Kang Moon-Sung
Department of Green Chemical Engineering, Sangmyung University, Cheonan 31066, Korea.
Membranes (Basel). 2021 Nov 11;11(11):867. doi: 10.3390/membranes11110867.
In this work, we developed pore-filled ion-exchange membranes (PFIEMs) fabricated for the application to an all-vanadium redox flow battery (VRFB) by filling a hydrocarbon-based ionomer containing a fluorine moiety into the pores of a porous polyethylene (PE) substrate having excellent physical and chemical stabilities. The prepared PFIEMs were shown to possess superior tensile strength (i.e., 136.6 MPa for anion-exchange membrane; 129.9 MPa for cation-exchange membrane) and lower electrical resistance compared with commercial membranes by employing a thin porous PE substrate as a reinforcing material. In addition, by introducing a fluorine moiety into the filling ionomer along with the use of the porous PE substrate, the oxidation stability of the PFIEMs could be greatly improved, and the permeability of vanadium ions could also be significantly reduced. As a result of the evaluation of the charge-discharge performance in the VRFB, it was revealed that the higher the fluorine content in the PFIEMs was, the higher the current efficiency was. Moreover, the voltage efficiency of the PFIEMs was shown to be higher than those of the commercial membranes due to the lower electrical resistance. Consequently, both of the pore-filled anion- and cation-exchange membranes showed superior charge-discharge performances in the VRFB compared with those of hydrocarbon-based commercial membranes.
在这项工作中,我们通过将含氟部分的烃基离聚物填充到具有优异物理和化学稳定性的多孔聚乙烯(PE)基材的孔中,开发了用于全钒氧化还原液流电池(VRFB)的孔填充离子交换膜(PFIEM)。通过使用薄的多孔PE基材作为增强材料,所制备的PFIEM显示出与商业膜相比具有优异的拉伸强度(即阴离子交换膜为136.6MPa;阳离子交换膜为129.9MPa)和更低的电阻。此外,通过在填充离聚物中引入氟部分并使用多孔PE基材,可以大大提高PFIEM的氧化稳定性,并且钒离子的渗透率也可以显著降低。通过对VRFB中的充放电性能进行评估,结果表明PFIEM中的氟含量越高,电流效率越高。此外,由于电阻较低,PFIEM的电压效率高于商业膜。因此,与烃基商业膜相比,孔填充的阴离子和阳离子交换膜在VRFB中均表现出优异的充放电性能。