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A Study of influence on sulfonated TiO2-Poly (Vinylidene fluoride-co-hexafluoropropylene) nano composite membranes for PEM Fuel cell application

机译:磺化TiO2-聚(偏二氟乙烯-六氟丙烯共聚物)纳米复合膜对PEM燃料电池应用的影响研究

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The present work describes the sulfonated Titania directly blended with Poly (Vinylidene fluoride-cohexafluoropropylene) as a host polymer by solvent casting technique for PEM fuel cell application. Characterization studies such as FT-IR, SEM, EDX, AFM, Proton conductivity, contact angle measurement, IEC, TG, water uptake, tensile strength were performed by for synthesized proton conducting polymer electrolytes. The maximum proton conductivity value was found to be 3.6 x 10(-3)S/cm for 25 wt% sulfonated Titania based system at 80 degrees C. The temperature dependent proton conductivity of the polymer electrolyte follows an Arrhenius relationship. Surface morphology of the composite membranes was investigated by tapping mode. Thermal stability of the system was studied by TG analysis. The fabricated composite membranes with high proton conductivity, good water uptake and IEC parameters exhibited a maximum fuel cell power density of 85 Mw/cm(2)for PEM fuel cell application. (C) 2016 Elsevier B.V. All rights reserved.
机译:本工作描述了通过溶剂浇铸技术直接与聚(偏二氟乙烯-六氟丙烯)作为主体聚合物共混的磺化二氧化钛,用于PEM燃料电池。对合成的质子传导聚合物电解质进行了表征研究,如FT-IR,SEM,EDX,AFM,质子电导率,接触角测量,IEC,TG,吸水率,拉伸强度。对于在80℃下25重量%的磺化二氧化钛基体系,发现最大质子电导率值为3.6×10(-3)S / cm。聚合物电解质的温度依赖性质子电导率遵循Arrhenius关系。通过敲击模式研究了复合膜的表面形态。通过TG分析研究了系统的热稳定性。具有高质子传导性,良好的吸水率和IEC参数的复合膜表现出PEM燃料电池应用的最大燃料电池功率密度为85 Mw / cm(2)。 (C)2016 Elsevier B.V.保留所有权利。

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