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Preparation of Covalent-Ionically Cross-Linked UiO-66-NH2/Sulfonated Aromatic Composite Proton Exchange Membranes With Excellent Performance

机译:制备共价离子交联的UIO-66-NH2 /磺化芳族复合质子交换膜,具有优异的性能

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摘要

Metal-organic frameworks (MOFs), as newly emerging filler materials for polyelectrolytes, show many compelling intrinsic features, such as variable structural designability and modifiability of proton conductivity. In this manuscript, UiO-66-NH2, a stable MOF with -NH2 functional groups in its ligands, was selected to achieve a high-performance sulfonated poly(arylene ether nitrile)s (SPENs)/UiO-66-NH2-x covalent-ionically cross-linked composite membrane. Simultaneously, the obtained composite membranes displayed excellent thermal stability and dimensional stability. The as-prepared SPEN/UiO-66-NH2-x cross-linked membranes exhibited higher proton conductivity than recast SPENs, which can be attributed to the construction of ionic clusters and well-connected ionic nanochannels along the interface between UiO-66-NH2-x and SPEN matrix via molecular interactions. Meanwhile, the methanol permeability of the SPEN/UiO-66-NH2-x composite membrane had been effectively reduced due to the barrier effect of cross-linking and the addition of UiO-66-NH2-x. The SPEN/UiO-66-NH2-5 composite membrane had the highest selectivity of 6.42 × 105 S·s·cm−3: 14.3-times higher than that of Nafion 117. The preparation of cross-linked UiO-66-NH2/SPEN composite was facile, which provides a new strategy for preparing high performance proton exchange membrane.
机译:金属有机框架(MOFS),作为用于聚电解质的新出现的填充材料,显示出许多引人注目的内在特征,例如变形结构可集成性和质子电导率的可变性性。在该稿件中,选择UIO-66-NH2,其中与其配体中具有-NH2官能团的稳定MOF,得到高性能磺化聚(亚亚腈)(Spens)/ UIO-66-NH2-X共价值离子交联复合膜。同时,所获得的复合膜显示出优异的热稳定性和尺寸稳定性。制备的SPEN / UIO-66-NH2-X交联膜表现出比重量型SPON更高的质子电导率,其归因于沿着UIO-66-NH2之间的界面构建离子簇和连接良好连接的离子纳米。 -X和培养基质通过分子相互作用。同时,SPEN / UIO-66-NH2-X复合膜的甲醇透过性得到有效由于交联的屏障的作用,添加UIO-66-NH 2 - x的降低。 SPEN / UIO-66-NH2-5复合膜的选择性最高为6.42×105 s·cm-3:高于Nafion 117的14.3倍。编制交联的UIO-66-NH2 / Spen Composite是Bacile,它为准备高性能质子交换膜提供了一种新的策略。

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