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两性离子支链功能化构建高质子/钒选择性传输通道,用于钒氧化还原流电池中的高性能膜。

Amphiprotic Side-Chain Functionalization Constructing Highly Proton/Vanadium-Selective Transport Channels for High-Performance Membranes in Vanadium Redox Flow Batteries.

机构信息

State Key Laboratory of Fine Chemicals, School of Petroleum and Chemical Engineering , Dalian University of Technology , 2 Dagong Road , Panjin , Liaoning 124221 , China.

出版信息

ACS Appl Mater Interfaces. 2018 Sep 26;10(38):32247-32255. doi: 10.1021/acsami.8b11993. Epub 2018 Sep 17.

Abstract

A novel amphiprotic side-chain-functionalized membrane was for the first time designed for vanadium redox flow battery (VFB). Different from frequently used blending amphiprotic membranes, the one proposed here is allowed to possess high anion-exchange capacity (IEC) without sacrificing the cation-exchange capacity (IEC) because both IEC and IEC increased with the grafting degree of side chains. Having a high IEC, the membrane prepared here exhibits an ultralow vanadium permeability (<10 cm s), which leads to very high Coulombic efficiencies (97-98% at 40-200 mA cm) of VFB and good cell self-discharge durability. Moreover, the high IEC contributes to a decent ionic conductivity (area resistance: 0.5 Ω cm), which ensures a high-voltage efficiency of the cell. On the basis of these good properties, the VFB single cell with this membrane achieves a high energy efficiency (e.g., 77.4% at 200 mA cm) that is higher than those of Nafion 212 and other reported amphiprotic membranes. These results indicate that the approach proposed here is an ideal option to prepare amphiprotic membranes for VFBs with high efficiency and good durability.

摘要

首次设计了一种新型两性侧链功能化膜用于钒氧化还原流电池(VFB)。与常用的共混两性膜不同,这里提出的膜允许具有高阴离子交换容量(IEC)而不牺牲阳离子交换容量(IEC),因为 IEC 和 IEC 都随侧链接枝度的增加而增加。具有高 IEC 的膜在此制备中表现出超低的钒渗透性(<10 cm s),这导致 VFB 的库仑效率非常高(在 40-200 mA cm 时为 97-98%)和良好的电池自放电耐久性。此外,高 IEC 有助于实现相当高的离子电导率(面积电阻:0.5 Ω cm),这确保了电池的高压效率。在此基础上,具有这种膜的 VFB 单电池实现了高能量效率(例如,在 200 mA cm 时为 77.4%),高于 Nafion 212 和其他报道的两性膜。这些结果表明,这里提出的方法是制备高效率和良好耐久性的 VFB 用两性膜的理想选择。

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