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Fabrication and evaluation of inorganic-organic composite protonic conductors using inorganic sols as a dispersoid

机译:以无机溶胶为分散质的无机-有机复合质子导体的制备与评价

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Highly proton conductive inorganic -organic composites to be utilized for the membrane of polymer electrolyte fuel cells were fabricated by the sol-gel method using 3-glycidoxypropyltrimethoxy-silane as a starting material. Inorganic sols employed in this study were SiO2, Al2O3 and a mixture of SiO2 and Al2O3. In order to enhance the proton conductivity, silicotungstic acid was added to the solution before the gelation completed. After the fabricated gels were characterized with XRD, SEM and FT-IR, they were examined in terms of electrical conductivity under various conditions, chemical durability against water and methanol as well as mechanical strength. The conductivity as high as 10(-2) S/cm at 100 degrees C and 90% R.H. was obtained for the sample derived from SiO2 sol (SG) while slightly lower values were obtained for the samples derived from Al2O3 sol (AG) and those from SiO2 and Al2O3 Sol (SAG). The enhanced mechanical strength was obtained for AG while SG was rather fragile. Comparing the chemical durability against water and methanol with each other, SAG were superior to SG and AG. As a whole, SAG was thought to be a promising material as a membrane for PEMFC and DMFC. (c) 2005 Elsevier B.V. All rights reserved.
机译:以3-环氧丙氧基丙基三甲氧基硅烷为起始原料,通过溶胶-凝胶法制备了用于高分子电解质燃料电池膜的高质子传导性无机-有机复合材料。在这项研究中使用的无机溶胶是SiO2,Al2O3以及SiO2和Al2O3的混合物。为了增强质子传导性,在胶凝完成之前将硅钨酸加入到溶液中。用XRD,SEM和FT-IR对制成的凝胶进行表征后,对它们在各种条件下的电导率,对水和甲醇的化学耐久性以及机械强度进行了检查。源自SiO2溶胶(SG)的样品在100摄氏度和90%RH下的电导率高达10(-2)S / cm,而来自Al2O3溶胶(AG)和SiO2溶胶(AG)的样品的电导率略低那些来自SiO2和Al2O3 Sol(SAG)。当SG相当脆弱时,AG的机械强度得到了提高。将水和甲醇的化学耐久性相互比较,SAG优于SG和AG。总体而言,SAG作为PEMFC和DMFC的膜被认为是很有前途的材料。 (c)2005 Elsevier B.V.保留所有权利。

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