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Innovative Perfluoropolyether-Functionalized Gas Diffusion Layers with Enhanced Performance in Polymer Electrolyte Membrane Fuel Cells

机译:创新的全氟聚醚官能化气体扩散层,具有增强的聚合物电解质膜燃料电池性能

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In this work, perfluoropolyether (PFPE) functionalization was used as hydrophizing treatment for gas diffusion layers (GDLs) in polymer electrolyte membrane fuel cells (PEMFCs), instead of standard PTFE coatings, aiming to enhance the hydrophobicity of the gas diffusion media and to reduce the mass transfer limitations in the final device. Carbon cloth diffusion layers and carbon black were functionalized by decomposition of a PFPE peroxide. PFPE-functionalized carbon black was employed in the preparation of an ink suitable for obtaining microporous layers (MPLs) by deposition onto macroporous backing layers. Dual-layer gas diffusion media showing superhydrophobic behavior due to different hydrophobizing treatments were compared with conventional PTFE-based materials, by testing in a single PEMFC working at two different temperatures and at low and high relative humidity conditions. Such tests demonstrated improved performances over conventional GDLs for pure PFPE-based samples in terms of both overall electrical performance and reduced diffusive limitations in high current density conditions. The maximum output power achieved with the novel PFPE-based compounds was 460 mW cm(-2) at 80 degrees C and relative humidity (RH) 100% while the best improvement (10%) with respect to conventional GDLs was realized at 80 degrees C and RH 60%.
机译:在这项工作中,全氟聚醚(PFPE)官能化用作聚合物电解质膜燃料电池(PEMFCs)中的气体扩散层(GDL)的水性化处理,而不是标准的PTFE涂层,旨在增强气体扩散介质的疏水性并减少最终设备中的传质限制。通过分解过氧化物的分解官能化碳布扩散层和炭黑。在制备用于通过沉积到大孔背衬层上的用于获得微孔层(MPLS)的油墨的墨水中使用PFPE官能化炭黑。通过在两种不同温度下工作的单个PEMFC和低和高相对湿度条件下,通过在单个PEMFC中测试,与常规PTFE基材料进行比较两层气体扩散介质。与常规PTFE基材料进行比较。这些测试在整体电气性能方面证明了对纯PFPE的样品的常规GDL的性能改善,并且在高电流密度条件下降低了扩散局限性。用新型PFPE基化合物实现的最大输出功率在80℃和相对湿度(RH)100%时为460mW cm(-2),而在80度以80度实现了常规GDL的最佳改进(10%) C和RH 60%。

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