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Superhydrophobic PAN Nanofibers for Gas Diffusion Layers of Proton Exchange Membrane Fuel Cells

机译:用于质子交换膜燃料电池气体扩散层的超疏水PAN纳米纤维

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Proton exchange membrane (PEM) fuel cells are considered to be the promising alternatives of natural resources for generating electricity and power. An optimal water management in the gas diffusion layers (GDL) is critical to high fuel cell performance. Its basic functions include transportation of the reactant gas from flow channels to catalyst effectively, draining out the liquid water from catalyst layer to flow channels, and conducting electrons with low humidity. In this study, polyacrylonitrile (PAN) was dissolved in a solvent and electrospun at various conditions to produce PAN nanofibers prior to the stabilization at 280 °C for 1 hour in the atmospheric pressure and carbonization at 850 °C for 1 hour. The surface hydrophobicity values of the carbonized PAN nanofibers were adjusted using superhydrophobic and hydrophilic agents. The thermal, mechanical, and electrical properties of the new GDLs depicted much better results compared to the conventionally used ones. The water condensation tests on the surfaces (superhydrophobic and hydrophilic) of the GDL showed a crucial step towards improved water managements in the fuel cell. This study may open up new possibilities for developing high-performing GDL materials for future PEM fuel cell applications.
机译:质子交换膜(PEM)燃料电池被认为是用于发电的自然资源的有前途的替代品。气体扩散层(GDL)中的最佳水管理对于高燃料电池性能至关重要。它的基本功能包括有效地将反应气体从流道传输到催化剂,将液态水从催化剂层排到流道,并以低湿度传导电子。在这项研究中,将聚丙烯腈(PAN)溶解在溶剂中并在各种条件下进行电纺丝,以生产PAN纳米纤维,然后在大气压下于280°C稳定1小时,然后在850°C碳化1小时。使用超疏水和亲水剂调节碳化PAN纳米纤维的表面疏水性值。与常规使用的GDL相比,新GDL的热,机械和电气特性显示出更好的结果。 GDL表面(超疏水和亲水)的水凝结测试表明,朝着改善燃料电池中水管理的方向迈出了关键的一步。这项研究可能为开发用于未来PEM燃料电池应用的高性能GDL材料开辟了新的可能性。

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