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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Enhanced Water Management of Three-Dimensional Graphene-Ni Foam with Patterned Wettability in a Polymer Electrolyte Membrane Fuel Cell
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Enhanced Water Management of Three-Dimensional Graphene-Ni Foam with Patterned Wettability in a Polymer Electrolyte Membrane Fuel Cell

机译:具有在聚合物电解质膜燃料电池中具有图案化润湿性的三维石墨烯-NI泡沫的水管理

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摘要

Development of a novel flow-field design for improving the water management of proton exchange membrane fuel cells (PEMFCs) is critical for realizing a practical high-performance energy conversion system. The conventional serpentine flow-field designs with the two-dimensional channel and rib configuration often cause water accumulation, thus blocking the transport of reactants and interfering with the removal of water, which in turn result in reduced fuel cell performance at high current densities. In this work, hydrophilic polymer grafting into the patterned region of three-dimensional multilayered graphene (MLG)-coated Ni foam is proposed to improve water management in fuel cells. The MLG-coated Ni foam with patterned wettability provides not only a gas transport pathway via the hydrophobic surface of graphene but also a direct drainage pathway through the patterned hydrophilic region, leading to improved mass transport and PEMFC performance at high current densities.
机译:开发用于改善质子交换膜燃料电池(PEMFC)的改善水管理的新颖流场设计对于实现实用的高性能能量转换系统至关重要。 具有二维通道和肋构造的常规蛇形流场设计经常导致水积聚,从而阻止反应物的传输并干扰水的去除,这反过来导致高电流密度降低燃料电池性能。 在这项工作中,提出了在三维多层石墨烯(MLG)涂覆的Ni泡沫的图案化区域中的亲水聚合物接枝,以改善燃料电池中的水管理。 具有图案化润湿性的MLG涂覆的Ni泡沫不仅提供了通过石墨烯的疏水表面而且通过图案化的亲水区域的直接引流通路提供了气体传输途径,导致在高电流密度下提高质量传输和PEMFC性能。

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