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Fabrication and Electrolyte Characterizations of Nanofiber Framework-Based Polymer Composite Membranes with Continuous Proton Conductive Pathways

机译:纳米纤维框架基聚合物复合膜的制备和电解质表征与连续质子传导途径

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摘要

For future fuel cell operations under high temperature and low- or non-humidified conditions, high-performance polymer electrolyte membranes possessing high proton conductivity at low relative humidity as well as suitable gas barrier property and sufficient membrane stability are strongly desired. In this study, novel nanofiber framework (NfF)-based composite membranes composed of phytic acid (Phy)-doped polybenzimidazole nanofibers (PBINf) and Nafion matrix electrolyte were fabricated through the compression process of the nanofibers. The NfF composite membrane prepared from the pressed Phy-PBINf showed higher proton conductivity and lower activation energy than the conventional NfF composite and recast-Nafion membranes, especially at low relative humidity. It is considered that the compression process increased the nanofiber contents in the composite membrane, resulting in the construction of the continuously formed effective proton conductive pathway consisting of the densely accumulated phosphoric acid and sulfonic acid groups at the interface of the nanofibers and the Nafion matrix. Since the NfF also improved the mechanical strength and gas barrier property through the compression process, the NfF composite polymer electrolyte membranes have the potential to be applied to future fuel cells operated under low- or non-humidified conditions.
机译:对于在高温和低或非加湿条件下的未来燃料电池操作,强烈需要高性能聚合物电解质膜,具有高相对湿度的质子电导率以及合适的阻气性和足够的膜稳定性。在该研究中,通过纳米纤维的压缩过程制造由植物酸(PHY) - 掺杂的聚苯哌啶酰纳米纤维(PBINF)和Nafion基质电解质组成的新型纳米纤维框架(NFF)基复合膜。由压制的PHY-PBINF制备的NFF复合膜显示出比常规NFF复合材料和重核 - NAFION膜更高的质子电导率和更低的活化能量,特别是在低相对湿度下。认为压缩过程增加了复合膜中的纳米纤维内容物,导致由纳米纤维和Nafion基质的界面处的密集累积的磷酸和磺酸基组成的连续形成有效的质子传导途径。由于NFF通过压缩过程还通过压缩过程改善了机械强度和阻气性,因此NFF复合聚合物电解质膜具有应用于在低或非加湿条件下操作的未来燃料电池的可能性。

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