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首页> 外文期刊>Macromolecules >Synthesis and Characterization of Poly(vinylidene fluoride)-g-sulfonated Polystyrene Graft Copolymers for Proton Exchange Membrane
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Synthesis and Characterization of Poly(vinylidene fluoride)-g-sulfonated Polystyrene Graft Copolymers for Proton Exchange Membrane

机译:质子交换膜用聚偏二氟乙烯-g-磺化聚苯乙烯接枝共聚物的合成与表征

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摘要

A series of poly(vinylidene fluoride)-g-sulfonated polystyrene (PVDF-g-SPS) graft copolymers were systematically synthesized and examined with the focus of understanding how the polymer microstructure (backbone molecular weight, graft density, graft length, sulfonic acid concentration, ion exchange capacity, etc.) affects their morphology, water uptake, and proton conductivity under various environmental conditions (temperature and relative humidity). The synthesis of these relatively well-defined graft structures involves three reaction steps, including the preparation of PVDF copolymers containing a few mol% of chlorotrifluoroethylene (CTFE) units, the ATRP graft-from reaction to incorporate several polystyrene side chains, and the subsequent sulfonation reaction on the PS side chains. The PVDF-g-SPS graft copolymer with a combination of a high PVDF'backbone molecular weight (M-n > 300 000 g/mol), very low SPS graft density (0.3 mol%), and high graft length (SPS content > 30 mol%) presents an interesting material for the proton exchange membrane (PEM). This graft copolymer self-assembles into a microphase-separated morphology with randomly oriented long-range lamella/cylinder ionic channels (with small widths) that are imbedded in the hydrophobic semicrystalline PVDF matrix. This graft copolymer morphology offers a high ion exchange capacity (IEC = 2.75 mmol/g) and resistance to excessive water swelling, which yields notably higher proton conductivity than Nafion under 30-120 degrees C and high humidity conditions.
机译:系统地合成和研究了一系列聚偏二氟乙烯-g-磺化聚苯乙烯(PVDF-g-SPS)接枝共聚物,重点是了解聚合物的微观结构(骨架分子量,接枝密度,接枝长度,磺酸浓度) ,离子交换容量等)会影响其在各种环境条件(温度和相对湿度)下的形态,吸水率和质子传导率。这些相对明确定义的接枝结构的合成涉及三个反应步骤,包括制备包含几摩尔%的三氟氯乙烯(CTFE)单元的PVDF共聚物,ATRP接枝反应以合并多个聚苯乙烯侧链以及随后的磺化反应在PS侧链上发生反应。 PVDF-g-SPS接枝共聚物具有高PVDF'主链分子量(Mn> 300 000 g / mol),非常低的SPS接枝密度(0.3 mol%)和高接枝长度(SPS含量> 30 mol)的组合%)提出了质子交换膜(PEM)的有趣材料。该接枝共聚物自组装成微相分离的形态,具有嵌入疏水半结晶PVDF基质中的随机取向的长距离层状/圆柱状离子通道(小宽度)。这种接枝共聚物的形态具有很高的离子交换容量(IEC = 2.75 mmol / g)和耐过度水溶胀的能力,在30-120摄氏度和高湿度条件下,其质子传导率明显高于Nafion。

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