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首页> 外文期刊>Macromolecules >Synthesis, nanostructures and properties of sulfonated poly(phenylene oxide) bearing polyfluorostyrene side chains as proton conducting membranes
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Synthesis, nanostructures and properties of sulfonated poly(phenylene oxide) bearing polyfluorostyrene side chains as proton conducting membranes

机译:带有聚氟苯乙烯侧链作为质子传导膜的磺化聚苯醚的合成,纳米结构和性能

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摘要

Graft copolymers with ionic backbones and hydrophobic fluorinated side chains have been prepared by using lithiated poly(2,6-dimethyl-1,4-phenylene oxide) (PPO) as a macroinitiator for anionic polymerization of 4-fluorostyrene. After grafting of the poly(4-fluorostyrene) (PFS) side chains, the PPO backbone was selectively sulfonated using trimethylsilylchlorosulfonate under mild and controlled conditions. Microscopy of solvent cast membranes revealed copolymer self-assembly into remarkably regular and well-ordered morphologies which, depending on the molecular structure, included lamellar and cylindrical arrangements of the proton conducting ionic nanophases. Thermal analysis indicated separate glass transitions of the PFS and PPO phases, and high thermal degradation temperatures of the membranes at approximately 220 and 300 °C for the H~+ and the Na~+ forms, respectively. The proton conductivity of fully hydrated acidic membranes was similar to that of Nafion, reaching above 0.2 S cm~(-1) at 120 °C. Compared at the same ion exchange capacity, the proton conductivity of the graft copolymer membranes was two times higher than that of a membrane based on an ungrafted sulfonated PPO. The study showed that it is possible to tailor and prepare proton-exchange membranes with well-ordered morphologies and high proton conductivity by employing graft copolymers with a sulfonated backbone bearing hydrophobic side chains.
机译:通过使用锂化聚(2,6-二甲基-1,4-苯撑氧)(PPO)作为4-氟苯乙烯的阴离子聚合反应的大分子引发剂,可以制备具有离子主链和疏水性氟化侧链的接枝共聚物。接枝聚(4-氟苯乙烯)(PFS)侧链后,在温和且受控的条件下,使用三甲基甲硅烷基氯磺酸盐将PPO主链选择性磺化。溶剂流延膜的显微镜检查显示共聚物自组装成显着规则和有序的形态,这取决于分子结构,包括质子传导离子纳米相的层状和圆柱状排列。热分析表明PFS和PPO相分别发生了玻璃化转变,并且H〜+和Na〜+形式的膜在大约220和300°C时具有较高的热降解温度。完全水合的酸性膜的质子电导率与Nafion相似,在120°C时达到0.2 S cm〜(-1)以上。在相同的离子交换容量下进行比较,接枝共聚物膜的质子传导率是基于未接枝磺化PPO的膜的质子传导率的两倍。研究表明,通过使用带有带有疏水性侧链的磺化主链的接枝共聚物,可以定制和制备具有良好秩序的形貌和高质子传导性的质子交换膜。

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