首页> 外文期刊>Polymer international >Nanostructure and properties of proton-conducting sulfonated poly(ether ether ketone) (SPEEK) and zirconia-SPEEK hybrid membranes for direct alcohol fuel cells: effect of the nature of swelling solvent and incorporation of heteropolyacid
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Nanostructure and properties of proton-conducting sulfonated poly(ether ether ketone) (SPEEK) and zirconia-SPEEK hybrid membranes for direct alcohol fuel cells: effect of the nature of swelling solvent and incorporation of heteropolyacid

机译:直接醇燃料电池用质子传导性磺化聚醚醚酮(SPEEK)和氧化锆-SPEEK杂化膜的纳米结构和性能:溶胀剂性质和杂多酸掺入的影响

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The influence, on membrane nanostructure and properties, of water or ethanol as swelling solvent of sulfonated poly(ether ether ketone) (SPEEK) and zirconia -SPEEK hybrid membranes prepared using the sol -gel process has been investigated. Independent of the solvent, small-angle X-ray scattering measurements reveal the existence of a two-level hierarchical structure in SPEEK of greater sulfonation level, consisting of solvent-swelled spatially correlated primary S03H-rich ionic clusters of around 15 A in size, forming larger secondary aggregates well dispersed in the PEEK matrix. The size of the primary nanodomains and the connectivity between domains are determining parameters for protonic conductivity, solvent swelling ability and permeability of the membranes. For both SPEEK and zirconia-SPEEK membranes containing ethanol, the pronounced affinity of ethanol molecules with SPEEK leads to an increase in the size of ionic clusters and of the number of connecting channels between clusters compared to membranes containing water. This promotes solvent swelling and proton conductivity. The increase in permeability to water induced by incorporation of ethanol in place of water in both polymeric and hybrid membranes is less in the hybrid membranes. This result suggests that the potential use of zirconia-SPEEK hybrid membranes in direct alcohol fuel cells is more promising than that of pure SPEEK, due not only to the less probable alcohol and water penetration in the membranes associated with their lower permeability, but also to the fact that an eventual penetration of alcohol in hybrid membranes should reduce the risk of cathode flooding compared to zirconia-f ree SPEEK membranes.
机译:研究了水或乙醇作为溶胶-凝胶法制备的磺化聚醚醚酮(SPEEK)和氧化锆-SPEEK杂化膜的溶胀溶剂对膜纳米结构和性能的影响。独立于溶剂,小角度X射线散射测量揭示了SPEEK中存在更高磺化水平的两级分层结构,该结构由溶剂溶胀的,空间相关的富含SO3H的初级离子簇组成,其大小约为15 A,形成分散在PEEK基质中的较大的二次聚集体。主要纳米域的大小和域之间的连通性是决定质子传导性,溶剂溶胀能力和膜渗透性的参数。对于含有乙醇的SPEEK膜和氧化锆-SPEEK膜,乙醇分子与SPEEK的显着亲和力导致离子簇的大小增加,簇之间的连接通道数也比含水的膜增加。这促进了溶剂溶胀和质子传导性。在混合膜中,通过在乙醇膜和混合膜中掺入乙醇代替水而引起的对水的渗透性增加较小。该结果表明,氧化锆-SPEEK混合膜在直接酒精燃料电池中的潜在应用比纯SPEEK更有前景,这不仅是由于其较低的渗透性导致膜中较低的酒精和水渗透性,而且还因为与氧化锆-自由SPEEK膜相比,最终将酒精渗透到混合膜中应降低阴极溢流的风险。

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