含钒液流电池用溶胀诱导的morpholine功能化含金刚烷聚芳醚酮膜

Bengui Zhang , Xueting Zhang , Qian Liu , Minghui Zhao , Zhirong Yang , Yanshi Fu , Enlei Zhang , Kangjun Wang , Guosheng Wang , Zhigang Zhang , Shouhai Zhang
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引用次数: 2

摘要

制备了溶胀诱导的含morpholine功能化聚芳醚酮(MAPEK)含钒液流电池膜。以氯甲基化聚合物和啉为原料制备了MAPEK膜,并在热磷酸中进一步膨胀,得到了离子电导率提高的膜。溶胀温度的变化可调节MAPEK膜的溶胀、选择性和离子电导率。在MAPEK膜中选择性膨胀诱导的微相分离,形成更宽的离子运输途径,导致低面积电阻。独特的刚硬的含金刚烷骨架限制了膜的膨胀。因此,MAPEK膜表现出优异的选择性和导电性(MAPEK膜的钒离子渗透系数低于3.82 × 0−7 cm2min−1)(Nafion212膜为42.5 × 0−7 cm2min−1),MAPEK-150膜表现出低面积电阻(0.17 Ωcm2)。采用MAPEK-150膜制备的钒液流电池(VFB)在80 mAcm−2和200 mAcm−2下的能量效率分别为91.1%和81.4%。此外,MAPEK膜在VFB和氧化电解质中表现出良好的稳定性。本研究采用的膨胀诱导方法是一种通用的、简便的提高离子交换膜导电性的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Swelling-induced morpholine functionalized adamantane-containing poly(aryl ether ketone) membranes for vanadium flow batteries

Swelling-induced morpholine functionalized adamantane-containing poly(aryl ether ketone) membranes for vanadium flow batteries

Swelling-induced morpholine functionalized adamantane-containing poly(aryl ether ketone) (MAPEK) membranes were prepared for vanadium flow batteries. MAPEK membranes were prepared from chloromethylated polymer and morpholine and further swelling-induced with hot phosphoric acid to obtain membranes with enhanced ionic conductivity. The swelling, selectivity, and ionic conductivity of MAPEK membranes were regulated by varying the swelling temperature. Selective swelling-induced microphase separation in MAPEK membranes, forming wider ion transport pathways and resulting in low area resistance. The unique rigid adamantane-containing backbone limited the swelling of membranes. Consequently, MAPEK membranes showed excellent selectivity and conductivity (vanadium ion permeability coefficient of MAPEK membranes was lower than 3.82 × 0−7 cm2min−1) (Nafion212 membrane, 42.5 × 0−7 cm2min−1), and MAPEK-150 membrane exhibited low area resistance (0.17  Ωcm2). The vanadium flow batteries (VFB) with MAPEK-150 membrane exhibited high energy efficiency (91.1% at 80 mAcm−2, 81.4% at 200 mAcm−2). Furthermore, MAPEK membranes showed good stability in VFB and oxidative electrolytes. The swelling-induced method utilized in this work is a versatile and facile method to enhance the conductivity of ion-exchange membranes.

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