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Hybrid materials for polymer electrolyte membrane fuel cells: Water uptake, mechanical and transport properties

机译:用于聚合物电解质膜燃料电池的混合材料:吸水率,机械性能和运输性能

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The water uptake, transport and mechanical properties of organic-inorganic hybrid materials based on sulfonated and silylated, cross-linked polyetheretherketone (called SOSi-PEEK/iV, where iV is the molar percentage of silylated monomeric units) for application in fuel cells are reported. The mechanical properties are superior to those of S-PEEK, due to the presence of silicon. The water and proton diffusion coefficients are reported as function of temperature and relative humidity. The proton conductivity of the membranes increases nearly four orders of magnitude when relative humidity varies from 30% to 100% corresponding to an increase of water/equivalent of ion-exchange groups, λ, from 1 to 15. The activation energy for proton conduction is slightly higher than in Nafion. Proton diffusion coefficients obtained from the Nernst-Einstein equation are compared with water chemical diffusion coefficients determined from water sorption kinetics. The equivalence of both quantities for λ ≥ 4 indicates that proton conductivity takes place via Grotthuss-type mechanism.
机译:据报道,基于磺化和甲硅烷基化的交联聚醚醚酮(称为SOSi-PEEK / iV,其中iV为甲硅烷基化单体单元的摩尔百分比)的有机-无机杂化材料的吸水率,传输率和力学性能。由于存在硅,其机械性能优于S-PEEK。水和质子扩散系数据报道是温度和相对湿度的函数。当相对湿度从30%变为100%时,膜的质子电导率增加了将近四个数量级,这与水/离子交换基团的当量λ的增加(从1到15)相对应。质子传导的活化能为略高于Nafion。从Nernst-Einstein方程获得的质子扩散系数与由水吸附动力学确定的水化学扩散系数进行了比较。 λ≥4的两个量相等,表明质子电导率是通过Grotthuss型机制发生的。

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