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首页> 外文期刊>Energy Technology: Generation,Conversion,Storage,Distribution >Effect of Pore Former on Carbon Black-Polytetrafluoroethylene-Based Monolithic Gas Diffusion Media for Proton Exchange Membrane Fuel Cells
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Effect of Pore Former on Carbon Black-Polytetrafluoroethylene-Based Monolithic Gas Diffusion Media for Proton Exchange Membrane Fuel Cells

机译:孔前成形对质子交换膜燃料电池的炭黑聚四氟乙烯基整体式扩散介质的影响

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Herein, carbon fiber gas diffusion media are replaced by carbon black (CB) and polytetrafluoroethylene (PTFE) composite diffusion media. Uniformly thick monolithic layers are synthesized by a novel die-cast process. They are evaluated for electrical conductivity, contact resistance, hydrophobicity, porosity, and mechanical integrity. Monolithic layers possess combined properties of a microporous layer and gas diffusion layer with a mixed tri-modal pore structure. The monolithic layers are further improved by inducing pores with pore formers. These layers are characterized for use in proton exchange membrane fuel cells. Pore formers increase the porosity and pore volume, and their effects on performance are revealed. The effect of porous structure on catalyst utilization is assessed by cyclic voltammetry. The power density of monolithic layers is on par with standard layers, whereas the pore-induced monolithic layers achieve 27% higher power density compared with standard layers. The synthesized composite gas diffusion media are significantly insensitive to changes in humidity and represent an excellent alternative for use in fuel cells.
机译:这里,碳纤维气体扩散介质由炭黑(Cb)和聚四氟乙烯(PTFE)复合扩散介质代替。通过新型压铸工艺合成均匀厚的整体层。它们评估了电导率,接触电阻,疏水性,孔隙度和机械完整性。单片层具有微孔层和气体扩散层的组合性质,具有混合的三型孔隙结构。通过用孔制剂诱导孔进一步改善整体层。这些层的特征在于用于质子交换膜燃料电池。孔隙成型剂增加了孔隙率和孔体积,并揭示了它们对性能的影响。通过环状伏安法评估多孔结构对催化剂利用的影响。单片层的功率密度与标准层相提并论,而孔诱导的整体层与标准层相比达到功率密度较高的27%。合成的复合气体扩散介质对湿度的变化显着不敏感,并且代表了用于燃料电池的优异替代方案。

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