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Anion Exchange Membranes for Vanadium Redox Flow Batteries

机译:用于钒氧化还原流电池的阴离子交换膜

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Cross-linked quaternary ammonium functionalized Radel membranes with a high degree of functionalization (DF) were synthesized and evaluated in a vanadium redox flow battery. The permeation of vanadium cations through this type of anion exchange membrane was reduced significantly compared to sulfonated ion exchange membranes, while the ion conductivity of the AEM was low. Increasing the DF increased the ion conduction and crosslinking endowed mechanical strength in water by restricting swelling. However, crosslinking decreased the ion conductivity of the membrane, which offset the benefit of increasing the DF and the very low vanadium permeation. The resulting cell performance was similar to that of N212.
机译:合成具有高官能化(DF)的交联季铵官能化的杂散膜,并在钒氧化还原流量电池中进行评估。与磺化离子交换膜相比,通过这种无阴离子交换膜的透过这种阴离子交换膜的渗透性显着降低,而AEM的离子电导率低。通过限制肿胀,增加DF增加了离子传导和交联在水中赋予了机械强度。然而,交联降低了膜的离子传导性,这抵消了增加DF和非常低的钒渗透的益处。所得到的细胞性能与N212类似。

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