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首页> 外文期刊>Journal of Membrane Science >Beneficial effect of carbon nanotubes on the performances of Nafion membranes in fuel cell applications
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Beneficial effect of carbon nanotubes on the performances of Nafion membranes in fuel cell applications

机译:碳纳米管对燃料电池应用中Nafion膜性能的有益影响

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摘要

Multi-walled carbon nanotubes (MWCNTs) were dispersed by melt-extrusion within Nafion~® membranes in order to decrease the methanol permeability without deleterious effect on the ionic conductivity. The risk of short-circuits was minimized by keeping the carbon nanotubes content lower than the percolation threshold. Two series of carbon nanotubes grafted by carboxylic acid groups were used, i.e., commercially available carbon nanotubes and MWCNTs home-grafted by carboxylic acid containing alkyl radicals. The second series of nanotubes were more resistant to break-up during melt-processing. Methanol permeability was decreased by approximately 60% without any decrease in the ionic conductivity. In parallel, the Young's modulus was increased by 140% and 160% as compared to pure Nafion~® at MWCNT contents of 1 and 2 wt%, respectively.
机译:通过熔融挤出将多壁碳纳米管(MWCNT)分散在Nafion®膜中,以降低甲醇的渗透性,而不会损害离子电导率。通过使碳纳米管的含量低于渗透阈值,可以将发生短路的风险降至最低。使用由羧酸基团接枝的两个系列的碳纳米管,即,可商购的碳纳米管和由含烷基的羧酸家庭接枝的MWCNT。第二系列纳米管在熔体加工过程中更抗破裂。甲醇的渗透率降低了约60%,而离子电导率没有降低。同时,与纯Nafion?相比,在MWCNT含量分别为1和2 wt%时,杨氏模量分别增加了140%和160%。

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