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Nafion (R)/ sulfated zirconia oxide-nanocomposite membrane: the effects of ammonia sulfate on fuel permeability

机译:Nafion(R)/硫酸化氧化锆氧化物纳米复合膜:氨硫酸盐对燃料渗透性的影响

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Nafion (R)/sulfated zirconium nanocomposite membranes were prepared by incorporating sulfonated zirconia with ammonia sulfate and sulphuric acid, which enhances proton conductivity and reduces fuel crossover on Nafion (R) membrane as they sustain water affinity and strong acidity. XRD, AFM, SEM, FTIR and TGA were used to investigate the morphology and high temperature degradation of nanocomposite membranes compared with commercial Nafion (R) 117 membrane. The results show that nanocomposite membranes have low water content angle, improved thermal degradation and higher conductivity than commercial Nafion (R) 117 membrane, which holds great promise for fuel cell application. The Nafion (R)/ sulfated zirconia nanocomposite membrane obtained a higher IEC and water uptake due to the presence of SO42- providing extra acid sites for water diffusion. The proton conductivity calculated from impedance spectroscopy measurements were 7.891S/cm and 0.146S/cm, respectively, when compared with 0.113S/cm of commercial Nafion (R) 117 membrane. The Nafion (R)/sulfated zirconium nanocomposite membranes showed a highest power density of 183m. cm(-2) when evaluated using a direct single cell methanol fuel cell.
机译:通过将磺酸盐和硫酸掺入磺酸氧化锆和硫酸,通过硫酸硫酸盐和硫酸掺入Nafion(R)膜上的燃料交叉来制备Nafion/硫酸化锆纳米复合材料膜。与商业Nafion117膜相比,使用XRD,AFM,SEM,FTIR和TGA来研究纳米复合膜的形态和高温降解。结果表明,纳米复合膜具有低含水量,改善的热降解和比商业Nafion(R)117膜更高的导电性,这对燃料电池应用具有很大的承诺。 Nafion(R)/硫酸化氧化锆纳米复合材料膜由于SO42的存在而获得额外的IEC和水吸收,以提供用于水分扩散的额外酸部位。与20113s / cm的商业Nafion(R)117膜相比,根据阻抗光谱测量值计算的质子电导率分别为7.891℃和0.146℃。 Nafion(R)/硫酸化锆纳米复合材料膜显示出183m的最高功率密度。使用直接单细胞甲醇燃料电池评估时Cm(-2)。

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