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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Triple-layer proton exchange membranes based on chitosan biopolymer with reduced methanol crossover for high-performance direct methanol fuel cells application
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Triple-layer proton exchange membranes based on chitosan biopolymer with reduced methanol crossover for high-performance direct methanol fuel cells application

机译:基于壳聚糖生物聚合物的三层质子交换膜,具有减少的甲醇穿越,可用于高性能直接甲醇燃料电池

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摘要

A novel triple-layer proton exchange membrane comprising two thin layers of structurally modified chitosan, as methanol barrier layers, both sides coated with Nafion ~?105 is prepared and tested for high-performance direct methanol fuel cell applications. A tight adherence is detected between layers from SEM and EDX data for the cross-sectional area of the newly designed membrane, which are attributed to high affinity of opposite charged polyelectrolyte layers. Proton conductivity and methanol permeability measurements show improved transport properties for the multi-layer membrane compared to Nafion ~?117 with approximately the same thickness. Moreover, direct methanol fuel cell tests reveal higher open circuit voltage, power density output, and overall fuel cell efficiency for the triple-layer membrane than Nafion ~?117, especially at concentrated methanol solutions. A power output of 68.10 mW cm ~(-2) at 5 M methanol feed is supplied using multi-layer membrane, which is found to be about 72% more than that of for Nafion ~?117. In addition, fuel cell efficiency for multi-layer membrane is measured about 19.55% and 18.45% at 1 and 5 M methanol concentrations, respectively. Owing to the ability to provide high power output, significantly reduced methanol crossover, ease of preparation and low cost, the triple-layer membrane under study could be considered as a promising polyelectrolyte for high-performance direct methanol fuel cell applications.
机译:制备一种新颖的三层质子交换膜,该膜包括两层结构改性的壳聚糖薄层作为甲醇阻隔层,两面都涂有Nafion〜?105,并进行了高性能直接甲醇燃料电池应用的测试。从SEM和EDX数据中可以检测到新设计膜的横截面积在各层之间的紧密粘附性,这归因于相反电荷的聚电解质层的高亲和力。与具有相同厚度的Nafion〜?117相比,质子电导率和甲醇渗透性测量结果显示了多层膜改善的传输性能。而且,直接甲醇燃料电池测试显示,与Nafion〜?117相比,三层膜的开路电压,功率密度输出和总体燃料电池效率更高,尤其是在浓甲醇溶液中。使用多层膜在5 M甲醇进料下提供68.10 mW cm〜(-2)的功率输出,发现它比Nafion〜?117的功率输出高约72%。此外,在1M和5M甲醇浓度下,多层膜的燃料电池效率分别约为19.55%和18.45%。由于具有提供高功率输出,显着减少甲醇交换,易于制备和低成本的能力,正在研究的三层膜可以被认为是用于高性能直接甲醇燃料电池应用的有前途的聚电解质。

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