首页> 外文期刊>Journal of power sources >Preparation and performance of a Nafion~(~R)/montmorillonite nanocomposite membrane for direct methanol fuel cell
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Preparation and performance of a Nafion~(~R)/montmorillonite nanocomposite membrane for direct methanol fuel cell

机译:直接甲醇燃料电池用Nafion〜(〜R)/蒙脱土纳米复合膜的制备及性能

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Direct methanol fuel cells (DMFC) have major technical problems, e.g. slow methanol oxidation kinetics and high methanol crossover, to use as power sources for several applications. To overcome these problems it has been proposed to increase the fuel cell operating temperature to over 100-150℃ and to reduce the methanol permeability. In this work, we made Nafion~(~R)/montmorillonite (MMT) nanocomposite membranes and carried out diverse tests. The nanocomposite membranes were produced by direct melt intercalation of perfluorosulfonylfluoride copolymer resin (Nafion~(~R) resin) into the montmorillonite and modified montmorillonite (m-MMT) which was organized by dodecylamine. The membrane-electrode assembly (MEA) has been made using a hot pressing method and the electrode prepared using PtRu black and Pt black catalysts for anode and cathode, respectively. The morphology of the nanocomposite membranes has been investigated using SEM and TEM. The nanocomposite membranes and MMT and m-MMT were analyzed using by FT-IR and X-ray diffraction (XRD). The thermal and mechanical properties of those membranes were also investigated and the methanol permeability was measured by gas chromatography (GC). The performance of the MEA using the nanocomposite membrane was evaluated by single cell test. The results show that the performance of the MEA using the nanocomposite membrane was higher than that of a commercial Nafion~(~R) membrane at high operating temperature.
机译:直接甲醇燃料电池(DMFC)具有主要的技术问题,例如缓慢的甲醇氧化动力学和较高的甲醇转化率,可以用作多种应用的动力源。为了克服这些问题,已经提出将燃料电池的工作温度提高到超过100-150℃并降低甲醇的渗透性。在这项工作中,我们制备了Nafion〜(〜R)/蒙脱土(MMT)纳米复合膜并进行了多种测试。纳米复合膜是通过将全氟磺酰氟共聚物树脂(Nafion®树脂)直接熔融嵌入蒙脱石和由十二烷基胺组成的改性蒙脱石(m-MMT)中而制得的。膜电极组件(MEA)已使用热压法制成,电极分别使用PtRu黑色和Pt黑色催化剂制备,用于阳极和阴极。已经使用SEM和TEM研究了纳米复合膜的形态。通过FT-IR和X射线衍射(XRD)分析纳米复合膜和MMT和m-MMT。还研究了这些膜的热和机械性能,并通过气相色谱法(GC)测量了甲醇的渗透性。通过单电池测试评估使用纳米复合膜的MEA的性能。结果表明,在高工作温度下,使用纳米复合膜的MEA的性能要比市售的Nafion〜(R)膜高。

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