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Aniosotropically Organized LDH on PVDF: A Geometrically Templated Electrospun Substrate for Advanced Anion Conducting Membranes

机译:在PVDF上的各向异性组织的LDH:用于高级阴离子传导膜的几何模板电纺基底。

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摘要

A bioinspired geometric templating of an electrospun PVDF substrate with hexagonal platelets of Mg-Al layered double hydroxide (LDH), an intrinsic anion conductor, is presented. The distinctive morphology restructures the internal pore geometry and modulates the dynamic wetting profile of PVDF, transforming it into a highly functional substrate for SAFC anion conducting membranes. The membrane fabricated with PVDF-LDH substrate exhibited exceptionally high durability (>140 degrees C), high anionic conductivity, ion exchange capacity (IEC), restricted swelling, and improved tensile strength, overcoming critical challenges associated with PVDF electrospun substrates and validating its immense potential as a high-temperature-stable and durable substrate for advanced fuel cell membrane applications.
机译:提出了具有六角形的Mg-Al层状双氢氧化物(LDH)(固有阴离子导体)的六边形血小板的电纺PVDF基板的生物启发几何模板。独特的形态重新构造了内部孔的几何结构,并调节了PVDF的动态​​润湿特性,从而将其转变为SAFC阴离子导电膜的高功能底物。用PVDF-LDH基材制造的膜表现出极高的耐久性(> 140摄氏度),高阴离子传导性,离子交换容量(IEC),有限的溶胀和提高的拉伸强度,克服了与PVDF电纺基材相关的关键挑战并验证了其巨大的优势具有潜在的高温稳定性和耐用性,可用于高级燃料电池膜应用。

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