Lee Seunghyun, Lee Hyejin, Yang Tae-Hyun, Bae Byungchan, Tran Nguyen Anh Thu, Cho Younghyun, Jung Namgee, Shin Dongwon
Fuel Cell Laboratory, Korea Institute of Energy Research, Daejoen 34129, Korea.
Graduate School of Energy Science and Technology, Chungnam National University, Daejeon 35015, Korea.
Membranes (Basel). 2020 Oct 26;10(11):306. doi: 10.3390/membranes10110306.
Perfluorinated polymers are widely used in polymer electrolyte membranes because of their excellent ion conductivity, which are attributed to the well-defined morphologies resulting from their extremely hydrophobic main-chains and flexible hydrophilic side-chains. Perfluorinated polymers containing quaternary ammonium groups were prepared from Nafion- and Aquivion-based sulfonyl fluoride precursors by the Menshutkin reaction to give anion exchange membranes. Perfluorinated polymers tend to exhibit poor solubility in organic solvents; however, clear polymer dispersions and transparent membranes were successfully prepared using -methyl-2-pyrrolidone at high temperatures and pressures. Both perfluorinated polymer-based membranes exhibited distinct hydrophilic-hydrophobic phase-separated morphologies, resulting in high ion conductivity despite their low ion exchange capacities and limited water uptake properties. Moreover, it was found that the capacitive deionization performances and stabilities of the perfluorinated polymer membranes were superior to those of the commercial Fumatech membrane.
全氟聚合物因其优异的离子导电性而被广泛应用于聚合物电解质膜中,这归因于其由极其疏水的主链和柔性亲水侧链所导致的明确形态。通过门舒特金反应,由基于Nafion和Aquivion的磺酰氟前体制备了含季铵基团的全氟聚合物,以得到阴离子交换膜。全氟聚合物在有机溶剂中往往表现出较差的溶解性;然而,在高温高压下使用N-甲基-2-吡咯烷酮成功制备了澄清的聚合物分散体和透明膜。两种基于全氟聚合物的膜均呈现出明显的亲水-疏水相分离形态,尽管其离子交换容量较低且吸水性有限,但仍具有高离子导电性。此外,发现全氟聚合物膜的电容去离子性能和稳定性优于市售的Fumatech膜。