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Synthesis and Proton Conductivity Studies of 5-AminotetrazoIe-Doped Sulfonated Polymer Electrolyte Membranes

机译:5-氨基四唑掺杂的磺化聚合物电解质膜的合成及质子电导研究

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摘要

This work reports the preparation and characterization of a new anhydrous proton conducting membrane based on poly(vinyl alcohol) (PVA), sulfosuccinic acid (SSA), and 5-aminotetrazole (ATet) at various stoichiometric ratios. The proton conductivities of membranes were investigated as a function of ATet composition, SSA composition, and temperature. New anhydrous proton conducting membranes were characterized by infrared spectra, thermogravimetric analysis (TGA), differential scanning calorimetry (DSC), dynamic mechanical analysis (DMA), methanol permeability, and impedance measurements for proton conductivity. TGA showed that the samples were thermally stable up to 150°C. DSC results illustrated the homogeneity of the materials. Mechanical analysis showed that the storage modulus of the PVA-SSA-ATet blend polymer membranes decreased with increasing ATet content. The membranes with higher tetrazole content, or higher acid doping level presented the higher proton conductivity. PVA-SSA-ATet4 can exhibit an anhydrous proton conductivity of 1.7 x 10~(-3) S/cm at 130°C and the proton conductivity increased with increasing temperature and acid doping level.
机译:这项工作报告了新型无水质子传导膜的制备和表征,该膜基于各种化学计量比的聚乙烯醇(PVA),磺基琥珀酸(SSA)和5-氨基四唑(ATet)。研究了膜的质子电导率随ATet组成,SSA组成和温度的变化。新型无水质子传导膜的特征在于红外光谱,热重分析(TGA),差示扫描量热法(DSC),动态力学分析(DMA),甲醇渗透性和质子传导率的阻抗测量。 TGA显示样品在高达150℃下是热稳定的。 DSC结果说明了材料的均质性。力学分析表明,随着ATet含量的增加,PVA-SSA-ATet共混聚合物膜的储能模量降低。具有较高的四唑含量或较高的酸掺杂水平的膜表现出较高的质子传导性。 PVA-SSA-ATet4在130°C时的无水质子电导率为1.7 x 10〜(-3)S / cm,且质子电导率随温度和酸掺杂水平的提高而增加。

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