Suppressing vanadium crossover using sulfonated aromatic ion exchange membranes for high performance flow batteries

Suppressing vanadium crossover using sulfonated aromatic ion exchange membranes for high performance flow batteries
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DOI:
10.1039/d0ma00508h
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发表时间:
2020-10
期刊:
影响因子:
5
通讯作者:
Tongshuai Wang;Junyoung Han;Kihyun Kim;A. Münchinger;Yuechen Gao;Alain Farchi;Y. Choe;K. Kreuer;Chulsung Bae;Sangil Kim
Tongshuai Wang;Junyoung Han;Kihyun Kim;A. Münchinger;Yuechen Gao;Alain Farchi;Y. Choe;K. Kreuer;Chulsung Bae;Sangil Kim
中科院分区:
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文献类型:
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作者:
Tongshuai Wang;Junyoung Han;Kihyun Kim;A. Münchinger;Yuechen Gao;Alain Farchi;Y. Choe;K. Kreuer;Chulsung Bae;Sangil Kim

文献摘要

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新型离子交换膜具有恰到好处的选择性水离子域宽度(<0.6 nm)和独特的功能,显示出非凡的离子选择性。我们的膜的这些独特的离子传输特性反映在卓越的液流电池性能中。
Novel ion exchange membrane with just the right width of selective aqueous ionic domain (<0.6 nm) and unique functionalities show extraordinary ion selectivity. These unique ion transport properties of our membrane is reflected in a remarkable flow battery performance.