Niccolai Francesca, Guazzelli Elisa, Cesari Andrea, El Koura Zakaria, Pucher Ilaria, Galli Giancarlo, Martinelli Elisa
Department of Chemistry and Industrial Chemistry, University of Pisa, Pisa, 56124, Italy.
Green Energy Storage (GES), Povo, Trento, 38123, Italy.
Macromol Rapid Commun. 2025 Mar;46(5):e2400852. doi: 10.1002/marc.202400852. Epub 2024 Dec 27.
This study presents the preparation and electrochemical testing of sulfonated styrene-grafted poly(vinylidene fluoride) (pVDF) copolymers as proton exchange membranes (PEMs) for semi-organic redox flow batteries (RFBs) based on 9,10-anthraquinone-2,7-disulfonic acid (AQDS)/bromine. The copolymers are synthesized via a two-step procedure, involving i) atom transfer radical polymerization of styrene (Sty) for the grafting to the pVDF backbone and ii) the sulfonation of the polystyrene grafted side chains. Copolymers with different amounts of sulfonated styrene (SSty) in the side chains (i.e., degree of sulfonation (DS)) are obtained and used for the preparation of PEMs by solution casting. The PEMs are characterized to assess their thermal, mechanical, water absorption, and ion exchange properties, to evaluate the effect of DS on membrane properties, and to select the membrane with the best overall performance for application in single cell tests. Electrochemical testing reveals that the pVDF-g-(Sty26-co-SSty14) membrane exhibits low crossover of redox species, favorable ohmic resistance, and energy efficiency. Results from single cell tests, as compared with commercial benchmarks such as Nafion 115 and Aquivion E87-12s, highlight the potential of such copolymers as alternative membranes for RFBs.
本研究介绍了磺化苯乙烯接枝聚偏氟乙烯(pVDF)共聚物作为质子交换膜(PEM)的制备及电化学测试,该质子交换膜用于基于9,10 - 蒽醌 - 2,7 - 二磺酸(AQDS)/溴的半有机氧化还原液流电池(RFB)。共聚物通过两步法合成,包括:i)苯乙烯(Sty)的原子转移自由基聚合以接枝到pVDF主链上;ii)聚苯乙烯接枝侧链的磺化。获得了侧链中具有不同磺化苯乙烯(SSty)含量(即磺化度(DS))的共聚物,并通过溶液浇铸用于制备质子交换膜。对质子交换膜进行表征以评估其热性能、机械性能、吸水性和离子交换性能,评估磺化度对膜性能的影响,并选择具有最佳综合性能的膜用于单电池测试。电化学测试表明,pVDF - g -(Sty26 - co - SSty14)膜表现出较低的氧化还原物质渗透、良好的欧姆电阻和能量效率。与Nafion 115和Aquivion E87 - 12s等商业基准相比,单电池测试结果突出了此类共聚物作为氧化还原液流电池替代膜的潜力。