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A facile surface modification of Nafion membrane by the formation of self-polymerized dopamine nano-layer to enhance the methanol barrier property

机译:通过形成自聚合的多巴胺纳米层来增强Nafion膜的表面改性,以增强甲醇的阻隔性能

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摘要

By immersing Nafion membrane into dopamine aqueous solution under mild conditions, a series of modified Nafion membranes for the application in direct methanol fuel cell (DMFC) were fabricated. High resolution scanning electron microscope and Fourier transform infrared spectra characterization revealed that a dense nano-layer around 50 nm was formed and adhered tightly to Nafion surface. Small-angle X-ray scattering, wide X-ray diffractometer and positron annihilation lifetime spectroscopy analysis implied that the microstructuresuch as phase-separated structure and ion-cluster channel of Nafion layer was slightly changed after surface modification. The influence of modification conditions including pH value, dopamine concentration and immersing time upon membrane performance was investigated. Due to the effective reduction of methanol dissolution and enhancement of methanol diffusion resistance, the methanol crossover of the modified membranes was dramatically suppressed by about 79% from 3.14 × 10~(-6) to about 0.65 × 10~(-6) cm~2 s~(-1). Meanwhile, the proton conductivity of the modified membranes was slightly decreased to be around 0.06 S cm~(-1). Consequently, the comprehensive performance of the modified membranes was improved by about five times. These results hinted the application promises of such modified Nafion membranes in DMFC.
机译:通过在温和的条件下将Nafion膜浸入多巴胺水溶液中,制得了一系列用于直接甲醇燃料电池(DMFC)的改性Nafion膜。高分辨率扫描电子显微镜和傅立叶变换红外光谱表征表明,形成了约50 nm的致密纳米层并紧密粘附在Nafion表面。小角度X射线散射,宽X射线衍射仪和正电子an没寿命光谱分析表明,表面改性后Nafion层的相分离结构和离子簇通道等微观结构发生了微小变化。研究了pH值,多巴胺浓度和浸泡时间等改性条件对膜性能的影响。由于有效地减少了甲醇的溶解并增强了甲醇的扩散阻力,改性膜的甲醇穿透率从3.14×10〜(-6)降低到约0.65×10〜(-6)cm〜被显着抑制了约79%。 2 s〜(-1)。同时,改性膜的质子传导率略有下降,约为0.06 S cm〜(-1)。因此,改性膜的综合性能提高了约五倍。这些结果暗示了这种改性的Nafion膜在DMFC中的应用前景。

著录项

  • 来源
    《Journal of power sources》 |2009年第2期|336-343|共8页
  • 作者单位

    Key Laboratory for Green Chemical Technology. School of Chemical Engineering and Technology, Tianjin University, 92# Weijin Road, Nankai District, Tianjin 300072, China;

    Key Laboratory for Green Chemical Technology. School of Chemical Engineering and Technology, Tianjin University, 92# Weijin Road, Nankai District, Tianjin 300072, China;

    Key Laboratory for Green Chemical Technology. School of Chemical Engineering and Technology, Tianjin University, 92# Weijin Road, Nankai District, Tianjin 300072, China;

    Key Laboratory for Green Chemical Technology. School of Chemical Engineering and Technology, Tianjin University, 92# Weijin Road, Nankai District, Tianjin 300072, China;

    Key Laboratory for Green Chemical Technology. School of Chemical Engineering and Technology, Tianjin University, 92# Weijin Road, Nankai District, Tianjin 300072, China;

    Key Laboratory for Green Chemical Technology. School of Chemical Engineering and Technology, Tianjin University, 92# Weijin Road, Nankai District, Tianjin 300072, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    surface modification; dopamine; nafion membrane; direct methanol fuel cell; methanol permeability; proton conductivity;

    机译:表面改性;多巴胺天然膜直接甲醇燃料电池甲醇渗透率质子传导率;

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