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在高电流密度下具有显著稳定性能的液流电池:一种兼具截留和导电性的非氟化隔膜的开发

Flow Battery with Remarkably Stable Performance at High Current Density: Development of A Nonfluorinated Separator with Concurrent Rejection and Conductivity.

作者信息

Liang Wanqiao, Ghasemiestahbanati Ehsan, Eden Nathan T, Acharya Durga, Doherty Cara M, Majumder Mainak, Hill Matthew R

机构信息

Department of Chemical and Biological Engineering, Monash University, Clayton, VIC, 3800, Australia.

Manufacturing, CSIRO, Clayton, VIC, 3168, Australia.

出版信息

Angew Chem Int Ed Engl. 2025 Jun 17;64(25):e202505383. doi: 10.1002/anie.202505383. Epub 2025 May 19.

Abstract

Redox flow batteries show promise for large-scale grid stabilisation. Of these, organic redox flow batteries (ORFBs) harbour the potential for sustainable and economic operation due to the materials deployed. Their long-term operation requires exquisite transport control of species across the cell, with movement of cations key for high current density, and anionic rejection needed for cycling stability. Nafion, although promising as a commercial separator, faces cost and sustainability limitations due to its fluorinated nature and per- and polyfluroralkyl substances (PFAS) generation. Here, we report the tailored combination of a hydrophilic mixed-matrix membrane, SPEEK-SX, with sulphonated polydichloroxylene (Sp-DCX) as the additive and sulphonated poly(ether ether ketone) (SPEEK) as the matrix. Compared to Nafion-212, the dense aromatic backbone of SPEEK efficiently rejected the crossover of electrolytes, with sulfonate groups housed within Sp-DCX micropores increasing Na mobility. SPEEK-SX2 exhibited 190 times higher Na/ Fe(CN) selectivity and 6 times higher Na/ 2,6-DHAQ selectivity compared to Nafion-212. This enabled stable operation for 600 cycles at a high current density of 160 mA cm with only 0.00935% per cycle capacity decay. In contrast, the SPEEK membrane exhibited 0.07% per cycle decay, whereas Nafion-212 failed to run at this high current density.

摘要

氧化还原液流电池在大规模电网稳定方面展现出了潜力。其中,有机氧化还原液流电池(ORFBs)由于所使用的材料而具有可持续和经济运行的潜力。它们的长期运行需要精确控制物质在电池中的传输,阳离子的移动对于高电流密度至关重要,而阴离子的排斥对于循环稳定性是必需的。Nafion虽然有望成为一种商业隔膜,但由于其含氟性质以及会产生全氟和多氟烷基物质(PFAS),面临成本和可持续性方面的限制。在此,我们报告了一种亲水性混合基质膜SPEEK-SX的定制组合,其中磺化聚二氯苯撑(Sp-DCX)作为添加剂,磺化聚醚醚酮(SPEEK)作为基质。与Nafion-212相比,SPEEK致密的芳香主链有效地抑制了电解质的交叉渗透,Sp-DCX微孔中的磺酸根基团提高了钠离子的迁移率。与Nafion-212相比,SPEEK-SX2的钠离子/铁氰化物选择性高190倍,钠离子/2,6-二羟基蒽醌选择性高6倍。这使得在160 mA cm²的高电流密度下能够稳定运行600个循环,每个循环的容量衰减仅为0.00935%。相比之下,SPEEK膜每个循环的衰减为0.07%,而Nafion-212在这种高电流密度下无法运行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/624b/12171330/d85c14d22d82/ANIE-64-e202505383-g003.jpg

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