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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Understanding a Degradation Mechanism of Direct Methanol Fuel Cell Using TOF-SIMS and XPS
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Understanding a Degradation Mechanism of Direct Methanol Fuel Cell Using TOF-SIMS and XPS

机译:使用TOF-SIMS和XPS了解直接甲醇燃料电池的降解机理

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The catalyst layers,which were obtained from the aged membrane electrode assemblies(MEAs)showing performance loss,17%,37%,45% as compared with that from the pristine MEA were investigated using X-ray photoelectron spectroscopy(XPS)and time-of-flight secondary ion mass spectroscopy(TOF-SIMS)to understand the degradation mechanism of single-cell performance in direct methanol fuel cell.The metallic components in the PtRu anode catalyst layer was decreased significantly with the performance drop revealed from the change of the valance bands.It has been found that ruthenium and platinum were driven to the cathode by the gradient of electric field during the durability test.From the mass-resolved imaging technique of TOF-SIMS combined with a peel-off method,it was indicated that the traveled ruthenium from anode to cathode was not uniformly distributed within the cathode catalyst layer,but more accumulated at the surface of the catalyst layer,that is,the interface with the gas diffusion layer.XPS and TOF-SIMS results suggested that the ruthenium ions are electro-deposited to RuO_x rather than metallic Ru,which seems to more closely correlate with the degradation of performance.
机译:利用X射线光电子能谱(XPS)和时间分析技术研究了老化的膜电极组件(MEAs)获得的催化剂层的性能,与原始MEA相比,其性能损失分别为17%,37%,45%。飞行二次离子质谱法(TOF-SIMS)了解了直接甲醇燃料电池中单电池性能的降解机理。PtRu阳极催化剂层中的金属成分显着降低,而随着PdRu的变化,性能下降。价带。已发现,在耐久性试验中,钌和铂是通过电场的梯度而被驱动到阴极的。从TOF-SIMS的质量分辨成像技术结合剥离方法可以看出:钌从阳极到阴极的迁移不均匀分布在阴极催化剂层内,而是更多地积累在催化剂层表面,即与气体扩散的界面er.XPS和TOF-SIMS结果表明,钌离子被电沉积到RuO_x而不是金属Ru,这似乎与性能下降密切相关。

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