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首页> 外文期刊>Electrochimica Acta >Characterization of gas diffusion layers for PEMFC
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Characterization of gas diffusion layers for PEMFC

机译:PEMFC气体扩散层的表征

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摘要

A carbon-filled gas diffusion layer (CFGDL), which is in the configuration similar to conventional carbon cloth gas diffusion layer (GDL) coated with carbon layer on both faces, was investigated and compared with conventional carbon paper-based single-layer and dual-layer GDLs. Like the carbon cloth GDL, CFGDL has presented superior performances over the single-layer or dual-layer GDL in all three polarization (activation, ohmic and concentration) controlled regions under electrochemical characterizations (steady-state polarization and electrochemical impedance spectra). The results from SEM showed that CFGDL has the same thickness of 0.11 mm as that of single-layer GDL, while dual-layer GDL has a thickness of 0.18 mm. The fully filled carbon paper with carbon/PTFE filler, as seen in the SEM image, displayed good support for the catalyst layer and electrolyte phase, allowing good electrical contact between the GDL/catalyst/membrane and GDL/flow field plate to be achieved. From porosimetry analysis, CFGDL presented a lower porosity of 67% and a much smaller average pore diameter of 4.7 μm compared to the single-layer GDL (porosity of 77% and pore diameter of 35.8 μm) and dual-layer GDL (porosity of 73% and pore diameter of 25.5 μm); however, it also gave the largest limiting current density, which reflects the improvement in mass transportation. This phenomenon is likely attributed to the fast removal of micro-water droplets formed in the CFGDL structure of the electrode.
机译:研究了一种碳填充气体扩散层(CFGDL),其结构类似于在两面上都涂有碳层的常规碳布气体扩散层(GDL),并与常规的基于碳纸的单层和双层层GDL。像碳布GDL一样,在电化学特性(稳态极化和电化学阻抗谱)下,CFGDL在所有三个极化(激活,欧姆和浓度)受控区域均表现出优于单层或双层GDL的性能。 SEM结果表明,CFGDL的厚度与单层GDL的厚度相同,为0.11mm,而双层GDL的厚度为0.18mm。从SEM图像中可以看出,用碳/ PTFE填料完全填充的碳纸显示出对催化剂层和电解质相的良好支撑,从而使GDL /催化剂/膜与GDL /流场板之间实现了良好的电接触。通过孔隙率分析,与单层GDL(孔隙度为77%,孔径为35.8μm)和双层GDL(孔隙度为73)相比,CFGDL的孔隙度较低,为67%,平均孔径小得多,为4.7μm %,孔径为25.5μm);但是,它也提供了最大的极限电流密度,这反映了质量传输的改善。该现象可能归因于在电极的CFGDL结构中形成的微水滴的快速去除。

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