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Preparation and characterization of polyvinyl alcohol based nanocomposite membrane for direct methanol fuel cell

机译:基于聚乙烯醇基纳米复合膜的直接甲醇燃料电池的制备与表征

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In this work, polymer electrolyte membranes were synthesized by polyvinyl alcohol and Sulfosuccinic acid by phase inversion technique. Also, prepared polyvinyl alcohol with Sulfosuccinic acid by adding Montmorillonite (MMT) nanoparticles. The effect of different concentrations of (0,5,15,20,25 wt%) nanoparticles in the membranes was studied with respect to proton conductivity and methanol permeability. The characterization studies for the synthesized membranes were done by Fourier transform infrared spectroscopy (FTIR), Universal testing machine (UTM) and Thermogravimetric analysis (TGA). The result shows that the incorporation of the montmorillonite organoclay upon sulfonated PVA membrane strongly affected the properties of the membranes. FTIR spectrum confirms sulfonation. Mechanical stability was evaluated using UTM. Proton conductivity and methanol permeability of the membrane changed with the contents of Montmorillonite in a nonlinear fashion. The optimum concentration of Montmorillonite within the sulfonated membrane, corresponding to maximum proton conductivity to methanol permeability ratio was 15wt%. The novel Polyvinyl alcohol membrane showed excellent proton conductivity; less methanol permeability as compared to Nafion membrane.
机译:在该作品中,通过相反的技术通过聚乙烯醇和磺基酸合成聚合物电解质膜。此外,通过添加蒙脱石(MMT)纳米颗粒,制备聚乙烯醇与磺酸甘油酸。关于质子电导率和甲醇渗透性研究了不同浓度(0.5,15,25wt%)纳米颗粒的影响。通过傅里叶变换红外光谱(FTIR),通用试验机(UTM)和热重分析(TGA)进行合成膜的表征研究。结果表明,在磺化PVA膜上掺入蒙脱石有机粘土强烈影响膜的性质。 FTIR光谱证实磺化。使用UTM评估机械稳定性。膜的质子电导率和甲醇渗透性随着非线性方式的蒙脱石含量而变化。磺化膜内的蒙脱石的最佳浓度,对应于与甲醇渗透率的最大质子电导率为15wt%。新型聚乙烯醇膜显示出优异的质子电导率;与Nafion膜相比,甲醇渗透性较少。

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