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静电纺丝混合全氟磺酸/磺化二氧化硅复合膜

Electrospun Hybrid Perfluorosulfonic Acid/Sulfonated Silica Composite Membranes.

作者信息

Santos Leslie Dos, Powers Devon, Wycisk Ryszard, Pintauro Peter N

机构信息

Department of Chemical and Biomolecular Engineering, Vanderbilt University, Nashville, TN 37235, USA.

出版信息

Membranes (Basel). 2020 Sep 23;10(10):250. doi: 10.3390/membranes10100250.

Abstract

Electrospinning was employed to fabricate composite membranes containing perfluorosulfonic acid (PFSA) ionomer, poly(vinylidene fluoride) (PVDF) reinforcement and a sulfonated silica network, where the latter was incorporated either in the PFSA matrix or in the PVDF fibers. The best membrane, in terms of proton conductivity, was made by incorporating the sulfonated silica network in PFSA fibers (Type-A) while the lowest conductivity membrane was obtained when sulfonated silica was incorporated into the reinforcing PVDF fibers (Type-B). A Type-A membrane containing 65 wt.% PFSA with an embedded sulfonated silica network (at 15 wt.%) and with 20 wt.% PVDF reinforcing fibers proved superior to the pristine PFSA membrane in terms of both the proton conductivity in the 30-90% RH at 80 °C (a 25-35% increase) and lateral swelling (a 68% reduction). In addition, it was demonstrated that a Type-A membrane was superior to that of a neat 660 EW perfluoroimide acid (PFIA, from 3M Co.) films with respect to swelling and mechanical strength, while having a similar proton conductivity vs. relative humidity profile. This study demonstrates that an electrospun nanofiber composite membrane with a sulfonated silica network added to moderately low EW PFSA fibers is a viable alternative to an ultra-low EW fluorinated ionomer PEM, in terms of properties relevant to fuel cell applications.

摘要

采用静电纺丝法制备了包含全氟磺酸(PFSA)离聚物、聚偏氟乙烯(PVDF)增强材料和磺化二氧化硅网络的复合膜,其中磺化二氧化硅网络可掺入PFSA基质或PVDF纤维中。就质子传导率而言,最佳的膜是通过将磺化二氧化硅网络掺入PFSA纤维中制成的(A型),而当磺化二氧化硅掺入增强PVDF纤维中时得到的膜的传导率最低(B型)。含有65 wt.% PFSA、嵌入磺化二氧化硅网络(15 wt.%)和20 wt.% PVDF增强纤维的A型膜在80°C、30 - 90%相对湿度下的质子传导率(提高25 - 35%)和横向溶胀(降低68%)方面均优于原始PFSA膜。此外,结果表明,A型膜在溶胀和机械强度方面优于纯660 EW全氟亚胺酸(PFIA,来自3M公司)膜,同时在质子传导率与相对湿度关系方面具有相似的曲线。这项研究表明,对于与燃料电池应用相关的性能而言,向中等低EW值的PFSA纤维中添加磺化二氧化硅网络的静电纺纳米纤维复合膜是超低EW值氟化离聚物质子交换膜的可行替代品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5d9/7598158/5571a79b762f/membranes-10-00250-g001.jpg

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