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Composite Proton Exchange Membranes Based on Chitosan and Phosphotungstic Acid Immobilized One-Dimensional Attapulgite for Direct Methanol Fuel Cells

机译:基于壳聚糖的复合质子交换膜固定的一维甲弧菌直接甲醇燃料电池

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摘要

In order to obtain biopolymer chitosan-based proton exchange membranes with excellent mechanical properties as well as high ionic conductivity at the same time, natural attapulgite (AT) with one-dimensional (1D) structure was loaded with a strong heteropolyacid and also a super proton conductor, phosphotungstic acid (PWA), using a facial method. The obtained PWA anchored attapulgite (WQAT) was then doped into the chitosan matrix to prepare a series of Chitosan (CS)/WQAT composite membranes. The PWA coating could improve the dispersion and interfacial bonding between the nano-additive and polymer matrix, thus increasing the mechanical strength. Moreover, the ultra-strong proton conduction ability of PWA together with the interaction between positively charged CS chains and negatively charged PWA can construct effective proton transport channels with the help of 1D AT. The proton conductivity of the composite membrane (4 wt.% WQAT loading) reached 35.3 mS cm−1 at 80 °C, which was 31.8% higher than that of the pure CS membrane. Moreover, due to the decreased methanol permeability and increased conductivity, the composite membrane with 4% WQAT content exhibited a peak power density of 70.26 mW cm−2 fed at 2 M methanol, whereas the pure CS membrane displayed only 40.08 mW cm−2.
机译:为了获得具有优异的机械性能的基于生物聚合物的质子交换膜以及高离子导电性同时,用一维(1D)结构的天然亚己酸盐(AT)用强杂多酸和超级质子装载使用面部方法的导体,磷钨酸(PWA)。然后将得到的PWA锚定亚己钛矿(WQAT)掺杂到壳聚糖基质中以制备一系列壳聚糖(CS)/ WQAT复合膜。 PWA涂层可以改善纳米添加剂和聚合物基质之间的分散体和界面键合,从而增加机械强度。此外,PWA的超强质子传导能力与带正电的CS链和带负电的PWA之间的相互作用可以在1D AT的帮助下构建有效的质子传输通道。复合膜的质子电导率(4重量%WQAT加载)在80℃下达到35.3ms Cm-1,比纯Cs膜的31.8%高31.8%。此外,由于甲醇渗透性和导电性增加,具有4%的甲醇含量的复合膜表现出在2M甲醇的70.26mW cm-2的峰值功率密度,而纯Cs膜仅显示40.08mm cm-2。

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