ACS Appl Mater Interfaces. 2019 Feb 6;11(5):5003-5014. doi: 10.1021/acsami.8b18617. Epub 2019 Jan 16.
A novel amphoteric membrane was designed by blending triple tertiary amine-grafted poly(2,6-dimethyl-1,4-phenylene oxide) (PPO-TTA) with sulfonated poly(ether ether ketone) (SPEEK) for vanadium redox flow batteries. An "acid-base pair" effect is formed by the combination of the tertiary amine group and sulfonic group, and extra nonbonding amine groups could be protonated. Both of them constitute a hydrogen bond network, which facilitates proton conduction and also hinders vanadium permeability because of the lowered swelling ratio and Donnan effect. All these contribute to improve the ion selectivity of the membrane while maintaining ionic conductivity. Compared with other amphoteric and SPEEK-based membranes, the membrane exhibits an excellent performance. The amphoteric membrane containing 15% PPO-TTA exhibits an ultralow vanadium permeability of 3.4 × 10 cm s and a low area resistance of 0.39 Ω cm. Consequently, the cell assembled with this membrane shows excellent performances far superior to SPEEK and Nafion 212. The Coulombic efficiency and energy efficiency of the cell are 94.3-98.3 and 90.3-77.1% at 40-200 mA cm, respectively, and have no significant reductions after 200 cycles. This performance is at a high level among the amphoteric and SPEEK-based membranes reported in recent years. The cell's open circuit voltage is maintained for up to 165 h. In addition, the membrane's chemical stability is improved by the effective barrier to the vanadium ion.
一种新型两性膜通过将三仲胺接枝的聚(2,6-二甲基-1,4-亚苯基氧化物)(PPO-TTA)与磺化聚醚醚酮(SPEEK)共混而设计用于钒氧化还原流电池。通过叔胺基团和磺酸基团的组合形成“酸碱对”效应,并且额外的非键合胺基团可以被质子化。它们两者构成氢键网络,有利于质子传导,并且由于溶胀率降低和Donnan 效应而阻碍钒渗透性。所有这些都有助于提高膜的离子选择性,同时保持离子电导率。与其他两性和基于 SPEEK 的膜相比,该膜表现出优异的性能。含有 15%PPO-TTA 的两性膜表现出超低的钒渗透性 3.4×10 cm s 和低的面电阻 0.39 Ω cm。因此,用该膜组装的电池表现出优异的性能,远优于 SPEEK 和 Nafion 212。在 40-200 mA cm 下,电池的库仑效率和能量效率分别为 94.3-98.3%和 90.3-77.1%,并且在 200 次循环后没有明显降低。在近年来报道的两性和基于 SPEEK 的膜中,该性能处于较高水平。电池的开路电压可保持长达 165 h。此外,通过对钒离子的有效阻挡来提高膜的化学稳定性。