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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Polymer Electrolyte Membranes Based on Multiblock Poly(phenylene ether ketone)s with Pendant Alkylsulfonic Acids: Effects on the Isomeric Configuration and Ion Transport Mechanism
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Polymer Electrolyte Membranes Based on Multiblock Poly(phenylene ether ketone)s with Pendant Alkylsulfonic Acids: Effects on the Isomeric Configuration and Ion Transport Mechanism

机译:基于链烷磺酸侧链多嵌段聚苯醚酮的高分子电解质膜:对异构构型和离子迁移机理的影响

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Two structural variations of multiblock poly(phenylene ether ketone)s (bSPPEKs) with pendant alkylsulfonic acids were prepared by a polycondensation reaction between oligomeric difluoro and diphenoxide precursors, followed by successive demethylation and sulfonation processes. Two isomers, bis[4-fluoro-3-(4'-methoxylbenzoyl)]biphenyl (p-BFMBP) and bis[5-fluoro-2-(4'-methoxylbenzoyl)]biphenyl (m-BFMBP), were prepared as the difluoro starting monomers. The corresponding polymer membranes were obtained with good mechanical stability to facilitate the further characterizations. The morphology of bSPPEICs was confirmed by atomic force microscopy, from which the distinct phase separation could be identified with the average hydrophilic domain size of ca. 15-20 nm for the m-bSPPEICs. It is worth noting that both m- and p-bSPPEKs show quite comparable, or even better, ion conduction capacities than commercially available Nafion membrane, especially under low relative humidity conditions (30-50%), suggesting their promising future as polymer electrolyte membrane candidates. Meanwhile, the proton conductivities of all of the m-bSPPEICs were found to be greater than those of the p-bSPPEICs over the entire relative humidity range, indicating better water-retention capacity and lower resistance to the ion transport. In addition, molecular dynamics simulation was employed to extensively explore the structure property relationship between the two polymers. The length, angle, and torsion distribution results clearly reveal their steric configurations, that is, a longer length and smaller angle in the side chain, together with a smaller torsion angle in the main chain for m-bSPPEICs, which produces slightly more free volume inside the polymer matrix. Analysis of the diffusion coefficients and coordination numbers shows that there is more water clustering around the sulfonic acid groups in the meta-polymers than in the para-polymers.
机译:通过低聚二氟和二苯酚前体之间的缩聚反应,然后依次进行去甲基化和磺化工艺,制备了具有侧链烷基磺酸的多嵌段聚苯醚酮(bSPPEK)的两种结构变化。制备了两种异构体,即双[4-氟-3-(4'-甲氧基苯甲酰基)]联苯(p-BFMBP)和双[5-氟-2-(4'-甲氧基苯甲酰基)]联苯(m-BFMBP),二氟起始单体。获得具有良好机械稳定性的相应的聚合物膜以促进进一步的表征。 bSPPEICs的形态已通过原子力显微镜确认,从中可以通过ca的平均亲水域大小确定明显的相分离。对于m-bSPPEIC,为15-20 nm。值得注意的是,m-bSPPEK和p-bSPPEK都显示出与市售Nafion膜相当的离子传导能力,甚至更好,尤其是在相对湿度较低(30-50%)的情况下,这表明它们有望成为高分子电解质膜考生。同时,发现在整个相对湿度范围内,所有m-bSPPEIC的质子电导率均高于p-bSPPEIC的质子电导率,表明保水能力更好,对离子迁移的抵抗力更低。此外,分子动力学模拟被用来广泛探索两种聚合物之间的结构性质关系。长度,角度和扭力分布结果清楚地表明了它们的空间构型,即,m-bSPPEIC的侧链长度更长,角度更小,主链扭转角度更小,从而产生了更多的自由体积在聚合物基质内部。对扩散系数和配位数的分析表明,在元聚合物中,磺酸基团周围的水团簇多于对位聚合物。

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