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Preparation and characterization of anhydrous polymer electrolyte membranes based on poly(vinyl alcohol-co-ethylene) copolymer

机译:基于聚乙烯醇-共-乙烯共聚物的无水聚合物电解质膜的制备与表征

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Anhydrous polymer electrolyte membranes with cross-linked structure have been prepared based on poly(vinyl alcohol-co-ethylene) (PVA-co-PE) copolymer. The PVA units of copolymer served to induce thermal cross-linking with 4,5-imidazole dicarboxylic acid (IDA) via esterification while PE units controlled the membrane swelling and the mechanical properties of films. Upon doping with phosphoric acid (PA, H3PO4) to form imidazole-PA complexes, the proton conductivity of membranes continuously increased with increasing PA content. As a result, proton conductivity reached 0.01 S/cm at 100 °C under anhydrous conditions. X-ray diffraction analysis revealed that both the d-spacing and crystalline peak of membranes were reduced upon introduction of IDA/PA due to the cross-linking effect. The PVA-co-PE/IDA/PA membranes exhibited good mechanical properties, e.g., 150 MPa of Young’s modulus, as determined by a universal testing machine. Thermal gravimetric analysis also represented that the thermal stability of membranes was increased up to 200 °C upon introduction of IDA/PA.
机译:基于聚(乙烯醇-共-乙烯)(PVA-co-PE)共聚物,制备了具有交联结构的无水聚合物电解质膜。共聚物的PVA单元通过酯化作用诱导与4,5-咪唑二羧酸(IDA)进行热交联,而PE单元控制膜的溶胀和薄膜的机械性能。掺杂磷酸(PA,H 3 PO 4 )形成咪唑-PA配合物后,膜的质子电导率随PA含量的增加而持续增加。结果,在无水条件下,质子传导率在100℃下达到0.01S / cm。 X射线衍射分析表明,由于交联作用,在引入IDA / PA时膜的d-间隔和结晶峰均降低。 PVA-co-PE / IDA / PA膜表现出良好的机械性能,例如通过通用试验机测定的杨氏模量为150 MPa。热重分析还表明,引入IDA / PA后,膜的热稳定性提高到200°C。

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