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首页> 外文期刊>Journal of Applied Electrochemistry >Electrochemical characterization of radiation-grafted ion-exchange membranes based on different matrix polymers
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Electrochemical characterization of radiation-grafted ion-exchange membranes based on different matrix polymers

机译:基于不同基质聚合物的辐射接枝离子交换膜的电化学表征

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Seven proton conducting membranes based on different commercial fluoropolymer films were prepared by radiation grafting with styrene followed by sulfonation. These membranes were studied as candidates for fuel cell electrolyte membranes and compared to Nafion(R) 105 and 117 with respect to conductivity, oxygen and hydrogen permeability, kinetics of the oxygen reduction reaction (ORR) and performance in a fuel cell. The dependence of the conductivity of the membranes on the relative humidity (RH) and temperature was also determined. The conductivity was observed to depend on the membrane thickness and the water uptake. The dependence of the conductivity on the temperature and the RH was the same for all of the experimental membranes. Reactant gas permeabilities appeared to depend only slightly on the matrix material and no major differences in the Tafel slopes and exchange current densities of the ORR were observed. Membranes with high water uptakes appeared to be less durable in the fuel cell than membranes with low water uptakes. Thus to prepare a membrane that is durable under the fuel cell conditions, the water uptake must remain low even at the expense of the conductivity. [References: 30]
机译:通过用苯乙烯进行辐射接枝,然后进行磺化,制备了基于不同商业含氟聚合物薄膜的七个质子传导膜。研究了这些膜作为燃料电池电解质膜的候选材料,并就电导率,氧气和氢气的渗透性,氧还原反应的动力学和燃料电池的性能与Nafion 105和117进行了比较。还确定了膜的电导率对相对湿度(RH)和温度的依赖性。观察到电导率取决于膜厚度和吸水率。对于所有实验膜,电导率对温度和RH的依赖性相同。反应气体的渗透率似乎仅与基质材料有关,并且未观察到ORR的Tafel斜率和交换电流密度有重大差异。具有高吸水率的膜在燃料电池中似乎不如具有低吸水率的膜耐用。因此,为了制备在燃料电池条件下耐用的膜,即使以电导率为代价,吸水率也必须保持较低。 [参考:30]

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