首页> 外文期刊>Applied Surface Science >Investigation of synergetic effect of PDMS polymer hydrophobicity and polystyrene-silica particles roughness in the content of microporous layer on water management in PEM fuel cell
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Investigation of synergetic effect of PDMS polymer hydrophobicity and polystyrene-silica particles roughness in the content of microporous layer on water management in PEM fuel cell

机译:PDMS聚合物疏水性与微孔层含量中聚苯乙烯-二氧化硅颗粒粗糙度对PEM燃料电池水管理的协同效应研究

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摘要

Water management is still challenging issue in PEM fuel cells and many researchers have tried to elucidate the behavior of liquid water in cell media. Gas Diffusion Layer (GDL) or Microporous Layer (MPL) are usually chosen to modify their surfaces with hydrophobic materials for better water removal ability. Distinctly, this study deals with using both hydrophobicity of polydimethylsiloxane (PDMS) and roughness of polystyrene (PS) - silica particles together in the content of MPL. The best fuel cell performance was obtained with the MPL included binary of PDMS-1 (3% wt.) and PS-silica (1% wt.) particles. The highest current density value of this MPL was recorded as 287.5 mA/cm(2) (@0.6 V) which is corresponded to the 172 mW/cm(2) power density with 0.1 mg Pt/cm(2) catalyst loading. Contact angle and avearge surface roughness were respectively measured as 122 degrees +/- 4.7 and 2.63 mu m for the mentioned MPL. It was assumed that optimum hydrophobicity and surface roughness distinguished this MPL from the other prepared MPLs in terms of PEM fuel cell performance.
机译:在PEM燃料电池中,水管理仍是具有挑战性的问题,许多研究人员已试图阐明液体在细胞培养基中的行为。通常选择气体扩散层(GDL)或微孔层(MPL)来用疏水性材料修饰其表面,以获得更好的除水能力。明显地,该研究涉及在MPL含量中同时使用聚二甲基硅氧烷(PDMS)的疏水性和聚苯乙烯(PS)-二氧化硅颗粒的粗糙度。 MPL包含PDMS-1(3%wt。)和PS-二氧化硅(1%wt。)颗粒的二元化合物,获得了最佳的燃料电池性能。该MPL的最高电流密度值记录为287.5 mA / cm(2)(@ 0.6 V),它对应于负载为0.1 mg Pt / cm(2)的172 mW / cm(2)功率密度。对于所述MPL,接触角和齿面表面粗糙度分别测量为122度+/- 4.7和2.63μm。假定在PEM燃料电池性能方面,最佳疏水性和表面粗糙度使该MPL与其他制备的MPL区分开。

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