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Gas Diffusion Layers for Proton Exchange Membrane Fuel Cells Using In situ Modified Carbon Papers with Multi-walled Carbon Nanotubes Nanoforest

机译:质子交换膜燃料电池的气体扩散层,使用具有多壁碳纳米管纳米森林的原位改性碳纸

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Gas diffusion layers (GDLs) in the proton exchange membrane fuel cells (PEMFCs) enable the distribution of reactant gases to the reaction zone in the catalyst layers by controlling the water in the pore channels apart from providing electrical and mechanical support to the membrane electrode assembly (MEA). In the present work, we report the in situ growth of carbon nanotubes nanoforest (CNN) directly onto macro-porous carbon paper substrates. The surface property as analysed by a Goniometer showed that the CNN/carbon paper surface is highly hydrophobic. CNN/ carbon paper was employed as a GDL in an MEA using Nafion-212 membrane as an electrolyte and evaluated in single cell PEMFCs. While the GDLs prepared by wire-rod coating process have major performance losses at lower humidities, the in situ CNN/carbon paper, developed in this work, shows very stable performance at all humidity conditions demonstrating a significant improvement for fuel cell performance. The CNN/carbon-based MEAs showed very stable performance with power density values of -1,100 and 550 mW cm~(-2), respectively, both using O_2 and air as oxidants at ambient pressure.
机译:质子交换膜燃料电池(PEMFC)中的气体扩散层(GDL)通过控制孔道中的水,除了向膜电极组件提供电气和机械支持外,还可以将反应气体分配到催化剂层中的反应区(MEA)。在本工作中,我们报告了碳纳米管纳米森林(CNN)直接在大孔碳纸基材上的原位生长。用测角仪分析的表面性质表明,CNN /复写纸表面是高度疏水的。在使用Nafion-212膜作为电解质的MEA中,CNN /碳纸被用作GDL,并在单电池PEMFC中进行了评估。尽管通过线材涂覆工艺制备的GDL在较低的湿度下会损失很多性能,但这项工作开发出的原位CNN /碳纸在所有湿度条件下均表现出非常稳定的性能,从而证明了燃料电池性能的显着改善。 CNN /碳基MEA在环境压力下使用O_2和空气作为氧化剂均表现出非常稳定的性能,功率密度值分别为1100和550 mW cm〜(-2)。

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