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首页> 外文期刊>Electrochimica Acta >Low methanol permeable composite Nafion/silica/PWA membranes for low temperature direct methanol fuel cells
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Low methanol permeable composite Nafion/silica/PWA membranes for low temperature direct methanol fuel cells

机译:低甲醇渗透性Nafion /二氧化硅/ PWA复合膜,用于低温直接甲醇燃料电池

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摘要

Nafion/silica/phosphotungstic acid (PWA) composite membranes, were studied for low temperature (<100℃) direct methanol fuel cells (DMFCs). The composite membranes were prepared by sol-gel' reaction of tetraethoxysilane (TEOS) within the nanophase of hydrated perfluorosulfonic acid membranes (Nafion 117) and the subsequent treatment in phosphotungstic acid (PWA) solution. X-ray diffraction (XRD) indicates that the silica can decrease the crystallinity of Nafion. The silica in membranes can greatly decrease the methanol diffusion coefficient (D) within appropriate silica content range. The proton conductivities (σ) of these composite membranes are higher than those of commercial Nafion 117. The result of σ/D shows the optimal silica content in composite membrane is 38.2 μg/g. Thermogravimetric analysis (TGA) shows that the incorporation of silica and PWA does not affect the thermostability of membrane. The data from single direct methanol fuel cell using these two membranes of commercial Nafion without treatment and Nafion/silica/PWA composite membranes with optimal silica content as polymer-electrolyte show that the cell with composite membrane has higher open circuit voltage (OCV = 0.75 V) and maximal power density (P{sub}(max) = 70 mW/cm{sup}2) than those of commercial Nafion without treatment (OCV = 0.68 V, P{sub}(max) = 62 mW/cm{sup}2) at 80 ℃.
机译:研究了Nafion /二氧化硅/磷钨酸(PWA)复合膜用于低温(<100℃)直接甲醇燃料电池(DMFC)的性能。通过在水合全氟磺酸膜(Nafion 117)的纳米相中四乙氧基硅烷(TEOS)的溶胶-凝胶反应,然后在磷钨酸(PWA)溶液中进行后续处理,制备复合膜。 X射线衍射(XRD)表明二氧化硅可降低Nafion的结晶度。在适当的二氧化硅含量范围内,膜中的二氧化硅会大大降低甲醇扩散系数(D)。这些复合膜的质子电导率(σ)高于商用Nafion 117的质子电导率。σ/ D结果表明,复合膜中的最佳二氧化硅含量为38.2μg/ g。热重分析(TGA)表明,二氧化硅和PWA的结合不会影响膜的热稳定性。使用这两种未经处理的商品化Nafion膜和具有最佳二氧化硅含量的Nafion /二氧化硅/ PWA复合膜作为聚合物电解质的单直接甲醇燃料电池的数据表明,具有复合膜的电池具有更高的开路电压(OCV = 0.75 V )和最大功率密度(P {sub}(max)= 70 mW / cm {sup} 2),比未经处理的商用Nafion(OCV = 0.68 V,P {sub}(max)= 62 mW / cm {sup) } 2)在80℃。

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