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Development of materials for mini DMFC working at room temperature for portable applications

机译:开发用于便携式应用的常温下迷你DMFC的材料

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Methanol permeability measurements and direct methanol fuel cell tests were performed at room temperature with different commercially available or recast Nation~R membranes and sulfonated polyimide (SPI) membranes. Power densities as high as 20 mW cm~(-2) could be obtained with Nation~R 115. However, in order to meet the technological requirements for portable applications, thinner membranes have to be considered. As the MeOH crossover increases greatly (from (7 to 20) X 10~(-8) mol s~(-1) cm~(-2)) while Nafion~R membranes thickness decreases, non-perfluorinated polymers having high IEC are promising candidates for DMFC working at room temperature. The development catalysts tolerant to methanol is also relevant for this application. In spite of the low permeability to MeOH of SPI membranes, the obtained electrical performance with E-TEK electrodes based MEAs was lower than that obtained with Nafion~R membranes. No significant increase of performances was neither evidenced by using homemade PtCr(7:3)/C and PtRu(4:1)/C catalysts instead of E-TEK electrodes with recast Nafion~R based MEAs. However, MEAs composed with thin SPI membranes (50 mu m) and homemade PtCr/C catalysts gave very promising results (18 mW cm~(-2)). Based on experimental observations, a speculative explanation of this result is given.
机译:甲醇渗透性测量和直接甲醇燃料电池测试是在室温下使用不同的市售或重铸Nation〜R膜和磺化聚酰亚胺(SPI)膜进行的。使用Nation〜R 115可获得高达20 mW cm〜(-2)的功率密度。但是,为了满足便携式应用的技术要求,必须考虑使用更薄的膜。随着MeOH穿透率的大幅增加(从(7到20)X 10〜(-8)mol s〜(-1)cm〜(-2)),而Nafion〜R膜厚度减小,具有高IEC的非全氟化聚合物成为有希望在室温下工作的DMFC候选产品。耐甲醇的显影催化剂也与此应用有关。尽管SPI膜对MeOH的渗透性较低,但基于E-TEK电极的MEA所获得的电性能却低于Nafion〜R膜所获得的电性能。使用自制的PtCr(7:3)/ C和PtRu(4:1)/ C催化剂代替具有重铸Nafion〜R的MEA的E-TEK电极,也未发​​现性能显着提高。然而,由薄的SPI膜(50μm)和自制的PtCr / C催化剂组成的MEAs的结果非常可观(18 mW cm〜(-2))。基于实验观察,对此结果进行了推测性解释。

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