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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Sulfonated Graphene-Nafion Composite Membranes for Polymer Electrolyte Fuel Cells Operating under Reduced Relative Humidity
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Sulfonated Graphene-Nafion Composite Membranes for Polymer Electrolyte Fuel Cells Operating under Reduced Relative Humidity

机译:用于降低相对湿度的聚合物电解质燃料电池的磺化石墨烯-Nafion复合膜

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摘要

Sulfonic acid-functionalized graphene (S-graphene) is employed as a promising inorganic filler as well as a solid acid proton conducting medium to realize a composite membrane with Nafion for polymer electrolyte fuel cell (PEFC) applications under reduced relative humidity (RH). The functionalization of graphene is performed by sulfonic acid-containing aryl radicals to increase the number of sulfonate groups per unit volume of a domain. A Nafion-S-graphene composite membrane is obtained by embedding S-graphene in Nafion, which provides high absorption of water and fast proton-transport across the electrolyte membrane under low RH values. The proton conductivity of the Nafion-S-graphene (1%) composite membrane at 20% RH is 17 mS cm(-1), which is five times higher than that of a pristine recast Nafion membrane. PEFCs incorporating the Nafion-S-graphene composite membrane deliver a peak power density of 300 mW cm(-2) at a load current density of 760 mA cm(-2) while operating at optimum temperature of 70 degrees C under 20% RH and ambient pressure. By contrast, operating under identical conditions, a peak power density of 220 mW cm(-2) is achieved with the pristine recast Nafion membrane. The Nafion-S-graphene composite membrane could be used to address many critical problems associated with commercial Nafion membranes in fuel cell applications.
机译:磺酸官能化的石墨烯(S-石墨烯)用作有前途的无机填料以及固体酸质子传导介质,可在相对湿度(RH)降低的情况下实现用于聚合物电解质燃料电池(PEFC)的带有Nafion的复合膜。石墨烯的官能化通过含磺酸的芳基进行,以增加每单位体积域的磺酸根基团的数量。通过将S-石墨烯嵌入Nafion中,可以得到Nafion-S-石墨烯复合膜,该膜在低RH值下具有高的吸水率和在电解质膜上的快速质子传输。 Nafion-S-石墨烯(1%)复合膜在20%RH下的质子传导率是17 mS cm(-1),是原始重铸Nafion膜的质子传导率的五倍。包含Nafion-S-石墨烯复合膜的PEFC在760 mA cm(-2)的负载电流密度下提供300 mW cm(-2)的峰值功率密度,同时在20%RH和70%的最佳温度下工作环境压力。相比之下,在相同的条件下运行,原始重铸的Nafion膜可实现220 mW cm(-2)的峰值功率密度。 Nafion-S-石墨烯复合膜可用于解决与燃料电池应用中商用Nafion膜相关的许多关键问题。

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