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首页> 外文期刊>RSC Advances >Novel ionic polymer–metal composite actuator based on sulfonated poly(1,4-phenylene ether-ether-sulfone) and polyvinylidene fluoride/sulfonated graphene oxide
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Novel ionic polymer–metal composite actuator based on sulfonated poly(1,4-phenylene ether-ether-sulfone) and polyvinylidene fluoride/sulfonated graphene oxide

机译:基于磺化聚(1,4-亚苯基醚-醚-砜)和聚偏二氟乙烯/磺化氧化石墨烯的新型离子聚合物-金属复合致动器

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摘要

In the present work, sulfonated graphene oxide and sulfonated poly(1,4-phenylene ether-ether-sulfone) were blended with polyvinylidene fluoride to create a novel ionic polymer–metal composite actuator with enhanced performance. An ionic polymer–metal composite membrane in the protonated form was prepared by casting a composite blend of sulfonated poly(1,4-phenylene ether-ether-sulfone), polyvinylidene fluoride and sulfonated graphene oxide onto a plating of platinum metal as the electrode. The degree of sulfonation of poly(1,4-phenylene ether-ether-sulfone) was characterized using ion-exchange capacity measurements. Energy dispersive X-ray and transmittance electron microscopy analyses were carried out to analyze the chemical composition and detailed structure. Deposition of the platinum electrode and the surface morphology of the proposed ionic polymer–metal composite actuator were assessed using scanning electron microscopy analysis. The electrical properties were measured using cyclic voltammetry, linear sweep voltammetry and proton conductivity. These measurements confirmed the better actuation performance of the fabricated ionic polymer–metal composite actuator compared to other expensive ionic polymer-based actuators, in terms of its high ion-exchange capacity, good proton conductivity, high current density and large bending deflection. The robust, flexible and mechanically strong membrane actuator, fabricated via the synergistic combination of sulfonated poly(1,4-phenylene ether-ether-sulfone), polyvinylidene fluoride and sulfonated graphene oxide, has considerable potential as an actuator material for robotic, bio-mimetic and other applications.
机译:在目前的工作中,将磺化氧化石墨烯和磺化聚(1,4-亚苯基醚-醚-砜)与聚偏二氟乙烯共混,以创建性能增强的新型离子聚合物-金属复合致动器。通过将磺化聚(1,4-亚苯基醚-醚-砜),聚偏二氟乙烯和磺化氧化石墨烯的复合混合物浇铸在作为电极的铂金属板上,制备了质子化形式的离子聚合物金属复合膜。使用离子交换容量测量来表征聚(1,4-亚苯基醚-醚-砜)的磺化度。进行了能量色散X射线和透射电子显微镜分析,以分析化学成分和详细结构。使用扫描电子显微镜分析评估铂电极的沉积和拟议的离子聚合物-金属复合致动器的表面形态。使用循环伏安法,线性扫描伏安法和质子电导率测量电性能。这些测量结果证实,与其他昂贵的基于离子聚合物的执行器相比,所制造的离子聚合物-金属复合执行器在更高的离子交换能力,良好的质子传导性,高电流密度和大的弯曲挠度方面具有更好的驱动性能。通过磺化聚(1,4-亚苯基醚-醚-砜),聚偏二氟乙烯和磺化氧化石墨烯的协同组合制造的坚固,灵活且机械强度高的膜执行器具有巨大的潜力,可作为用于机器人,生物制药,模拟和其他应用。

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