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首页> 外文期刊>Journal of Solid State Electrochemistry >Organically modified montmorillonite and chitosan–phosphotungstic acid complex nanocomposites as high performance membranes for fuel cell applications
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Organically modified montmorillonite and chitosan–phosphotungstic acid complex nanocomposites as high performance membranes for fuel cell applications

机译:有机改性的蒙脱石和壳聚糖-磷钨酸络合物纳米复合材料,可作为燃料电池应用的高性能膜

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Nanocomposite membranes based on polyelectrolyte complex (PEC) of chitosan/phosphotungstic acid (PWA) and different types of montmorillonite (MMT) were prepared as alternative membranes to Nafion for direct methanol fuel cell (DMFC) applications. Fourier transform infrared spectroscopy (FTIR) revealed an electrostatically fixed PWA within the PEC membranes, which avoids a decrease in proton conductivity at practical condition. Various amounts of pristine as well as organically modified MMT (OMMT) (MMT: Cloisite Na, OMMT: Cloisite 15A, and Cloisite 30B) were introduced to the PEC membranes to decrease in methanol permeability and, thus, enhance efficiency and power density of the cells. X-ray diffraction patterns of the nanocomposite membranes proved that MMT (or OMMT) layers were exfoliated in the membranes at loading weights of lower than 3 wt.%. Moreover, the proton conductivity and the methanol permeability as well as the water uptake behavior of the manufactured nanocomposite membranes were studied. According to the selectivity parameter, ratio of proton conductivity to methanol permeability, the PEC/2 wt.% MMT 30B was identified as the optimum composition. The DMFC performance tests were carried out at 70 °C and 5 M methanol feed and the optimum membrane showed higher maximum power density as well as acceptable durability compared to Nafion 117. The obtained results indicated that owing to the relatively high selectivity and power density, the optimum nanocomposite membrane could be considered as a promising polyelectrolyte membrane (PEM) for DMFC applications.
机译:制备了基于壳聚糖/磷钨酸(PWA)的聚电解质复合物(PEC)和不同类型的蒙脱土(MMT)的纳米复合膜,作为Nafion的替代膜,用于直接甲醇燃料电池(DMFC)应用。傅里叶变换红外光谱(FTIR)揭示了PEC膜内的静电固定PWA,可避免在实际条件下质子传导率下降。将各种量的原始物质以及有机改性的MMT(OMMT)(MMT:Cloisite Na,OMMT:Cloisite 15A和Cloisite 30B)引入PEC膜中,以降低甲醇的渗透性,从而提高膜的效率和功率密度细胞。纳米复合膜的X射线衍射图谱表明,MMT(或OMMT)层以小于3 wt。%的负载重量在膜中剥落。此外,研究了所制造的纳米复合膜的质子传导性和甲醇渗透性以及吸水行为。根据选择性参数,质子传导率与甲醇渗透率之比,确定PEC / 2 wt。%MMT 30B为最佳组成。 DMFC性能测试是在70°C和5 M甲醇进料下进行的,与Nafion 117相比,最佳膜表现出更高的最大功率密度以及可接受的耐久性。获得的结果表明,由于相对较高的选择性和功率密度,对于DMFC应用而言,最佳的纳米复合膜可被视为有前途的聚电解质膜(PEM)。

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