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Branched Sulfonated Polyimide/Sulfonated Methylcellulose Composite Membranes with Remarkable Proton Conductivity and Selectivity for Vanadium Redox Flow Batteries

机译:分枝磺化聚酰亚胺/磺化甲基纤维素复合膜,具有显着的质子电导率和钒氧化还原流量的选择性

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摘要

A series of branched sulfonated polyimide (bSPI)/sulfonated methylcellulose (s-MC) composite membranes composed of a designed and synthesized bSPI polymer and functionalized s-MC are prepared by using a facile solution casting method for vanadium redox flow batteries (VRFBs). Among all bSPI/s-MC composite membranes, the optimized bSPI/s-MC-20 % composite membrane has the best proton selectivity of 2.45x10(5) S min cm(-3), which is 14.4 times as high as the Nafion 115 membrane. The bSPI/s-MC-20 % composite membrane possesses superior proton conductivity compared to most reported SPI-based composite membranes for VRFBs. The VRFB with a bSPI/s-MC-20 % composite membrane shows excellent battery efficiencies (CE=99.2-98.0 %, EE=66.3-77.6 %) and capacity retention (73.3-47.2 %). Moreover, the cost of the bSPI/s-MC-20 % composite membrane is only a quarter of that of a commercial Nafion 115 membrane. This work develops a new strategy to fabricate cheap bSPI-based composite membranes by introducing a suitable functionalized biomass material.
机译:通过使用用于钒氧化还原流量电池(VRFBS)的容易溶液浇铸方法,制备由设计和合成的BSPI聚合物和官能化S-MC组成的一系列支链磺化聚酰亚胺(BSPI)/磺化甲基纤维素(S-MC)复合膜。在所有BSPI / S-MC复合膜中,优化的BSPI / S-MC-20%复合膜具有2.45×10(5)分钟(-3)的最佳质子选择性,其为Nafion的高度为14.4倍115膜。与大多数报道的VRFB的基于SPI的复合膜相比,BSPI / S-MC-20%复合膜具有优异的质子电导率。具有BSPI / S-MC-20%复合膜的VRFB显示出优异的电池效率(Ce = 99.2-98.0%,EE = 66.3-77.6%和容量保留(73.3-47.2%)。此外,BSPI / S-MC-20%复合膜的成本仅为商业保险115膜的四分之一。这项工作通过引入合适的官能化生物质材料制定了制造廉价BSPI基复合膜的新策略。

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