首页> 外文会议>International Congress on Membranes and Membrane Processes (ICOM 2002) Vol.4 (Desalination Vol.147) Jul 7-12, 2002 Toulouse, France >Synthesis and characterization of polyaryl blend membranes having different composition, different covalent and/or ionical cross-linking density, and their application to DMFC
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Synthesis and characterization of polyaryl blend membranes having different composition, different covalent and/or ionical cross-linking density, and their application to DMFC

机译:具有不同组成,不同共价和/或离子交联密度的聚芳基共混膜的合成与表征及其在DMFC中的应用

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摘要

In this contribution, different ionomer blend membrane types which show high proton conductivity, thermal stability, and good direct methanol fuel cell (DMFC) performance, are presented: (1) Covalently cross-linked blend membranes from polyaryl sulfinates and polyaryl sulfonates where the sulfinate groups were crosslinked by alkylation with 1,4-diiodobutane; (2) ionically cross-linked blend membranes from polyaryl sulfonates and poly(het)aryl N bases; (3) covalent-ionically cross-linked blend membranes from polyaryl sulfinates, polyaryl sulfonates, and poly(het)aryl N bases; and (4) blend membranes which additionally contain an inorganic compound. The inorganic compound was mixed into the membrane. As aryl polymers, different poly(ethersulfone)s and different poly(etherketone)s have been used, as hetaryl N base, polybenzimidazole PBI Celazole~(~R) has been applied. The membrane characterization yielded the following results: (1) high proton conductivities of the membranes could be realized; (2) the TEM micrographs showed that phase-separated or homogeneous morphologies could be realized in the membranes; (3) the DMFC application of the membranes showed that the developed nonfluorinated ionomer membranes have a DMFC performance comparable to perfluorinated ionomer membranes, reaching peak power densities of around 0.25 W/cm~2 at 110℃. It was also found that the addition of SiO_2 powder dramatically reduced the MeOH permeability, but also led to a worse DMFC performance, probably caused by a worse contact membrane-electrode because of a rougher membrane surface caused by the inorganic compound.
机译:在此贡献中,提出了具有高质子传导性,热稳定性和良好的直接甲醇燃料电池(DMFC)性能的不同离聚物共混膜类型:(1)由亚芳基磺酸盐和亚芳基磺酸盐共价交联而成的共混膜通过与1,4-二碘丁烷的烷基化使基团交联; (2)聚芳基磺酸盐和聚(杂)芳基N碱的离子交联共混膜; (3)由聚芳基亚磺酸盐,聚芳基磺酸盐和聚(杂)芳基N碱形成的共价离子交联的共混膜; (4)另外含有无机化合物的混合膜。将无机化合物混合到膜中。作为芳基聚合物,已使用了不同的聚(醚砜)和不同的聚(醚酮),作为杂芳基N碱,已使用了聚苯并咪唑PBI Celazole_(〜R)。膜表征得到以下结果:(1)可以实现膜的高质子电导率; (2)TEM显微照片表明,在膜中可以实现相分离或均匀的形态。 (3)膜的DMFC应用表明,已开发的非氟化离聚物膜具有与全氟化离聚物膜相当的DMFC性能,在110℃时达到约0.25 W / cm〜2的峰值功率密度。还发现,SiO_2粉末的添加显着降低了MeOH的渗透性,但是还导致了更差的DMFC性能,这可能是由于由无机化合物引起的膜表面更粗糙导致接触膜电极较差所致。

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