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Rational Design of Ultrathin Gas Barrier Layer via Reconstruction of Hexagonal Boron Nitride Nanoflakes to Enhance the Chemical Stability of Proton Exchange Membrane Fuel Cells

机译:通过重建六边形氮化物纳米薄片的超超气体阻挡层的理性设计,提升质子交换膜燃料电池的化学稳定性

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摘要

Hexagonal boron nitride (hBN) has great potential as a promising gas barrier layer in proton exchange membrane fuel cells (PEMFCs) as it shows high proton conductivity as well as excellent gas-blocking capability. However, structural defects and mechanical damage during the transfer of the hBN layer and membrane swelling have limited the application of hBN sheets to PEMFCs. Here, an ultrathin gas barrier layer is successfully fabricated on a proton exchange membrane via reconstruction of mechanically exfoliated hBN nanoflakes using a direct spin-coating process. The hBN-coated layer effectively suppresses the gas crossover and inhibits the formation of reactive oxygen radicals in the electrodes without reducing the proton conductivity of the membrane. It is also demonstrated that the structural advantages of hBN-coated gas barrier layers promise high performance of a unit cell even after a open-circuit voltage (OCV) hold test for 100 h. Furthermore, through in-depth postmortem analyses, a time-dependent degradation mechanism of membrane electrode assembly under the OCV condition is rationally proposed.
机译:六边形氮化硼(HBN)具有质子交换膜燃料电池(PEMFCs)中具有很好的气体阻挡层的潜力,因为它显示出高质子电导率以及出色的气体阻塞能力。然而,在HBN层和膜肿胀转移过程中的结构缺陷和机械损坏限制了HBN片材的施加到PEMFC。这里,通过使用直接旋涂工艺通过重建机械剥离的HBN纳米薄膜在质子交换膜上成功地制造过超薄阻气层。 HBN涂覆层有效地抑制了气体交叉,并抑制电极中的反应性氧自由基的形成而不降低膜的质子电导率。还证明了HBN涂覆的阻气层的结构优势,即使在开路电压(OCV)保持测试100小时之后,也能够高性能。此外,通过深入的后期分析,合理提出了在OCV条件下的膜电极组件的时间依赖性降解机制。

著录项

  • 来源
    《Small》 |2019年第44期|共9页
  • 作者单位

    SKKU Advanced Institute of Nanotechnology (SAINT) and School of Advanced Materials Science and Engineering Sungkyunkwan University Suwon 16419 Republic of Korea;

    SKKU Advanced Institute of Nanotechnology (SAINT) and School of Advanced Materials Science and Engineering Sungkyunkwan University Suwon 16419 Republic of Korea;

    SKKU Advanced Institute of Nanotechnology (SAINT) and School of Advanced Materials Science and Engineering Sungkyunkwan University Suwon 16419 Republic of Korea;

    Department of Energy Engineering Hanyang University Seoul 04763 Republic of Korea;

    Department of Energy Engineering Hanyang University Seoul 04763 Republic of Korea;

    Graduate School of Energy Science and Technology (GEST) Chungnam National University Daejeon 34148 Republic of Korea;

    SKKU Advanced Institute of Nanotechnology (SAINT) and School of Advanced Materials Science and Engineering Sungkyunkwan University Suwon 16419 Republic of Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    gas barrier layer; gas crossover; hexagonal boron nitride; oxygen radicals; proton exchange membrane fuel cells;

    机译:阻气层;气体交叉;六边形氮化物;氧自由基;质子交换膜燃料电池;

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