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Fabrication of microporous layer – free hierarchical gas diffusion electrode as a low Pt-loading PEMFC cathode by direct growth of helical carbon nanofibers

机译:通过螺旋碳纳米纤维的直接生长,制备微孔层-无级气体扩散电极,作为低Pt负载的PEMFC阴极

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Improving interfacial contact between each component in the proton exchange membrane fuel cell (PEMFC) can lead to a significant increase in power density and Pt utilization. In this work, the junction between the catalyst layer and gas diffusion layer (GDL) is greatly enhanced through direct attachment of helical carbon nanofibers, giving rise to a hierarchical structure within the electrical interconnections. The alternative novel GDL is produced by spraying a thin layer of Pd _(2) C _(60) precursor on commercial carbon paper, followed by chemical vapor deposition growth resulting in a surface morphology of well-attached nanofibers surrounding the microfibers present in the commercial carbon paper. Subsequent solvothermal deposition of platinum nanoparticles allowed evaluation of its suitability as gas diffusion electrode in cathodic H _(2) /O _(2) PEMFC environment. A combination of lowered charge transfer resistance and enhanced Pt-utilization is attributed to its unique wire-like appearance and its robust properties. The fabricated microporous layer – free GDL is suitable for relatively aggressive membrane electrode assembly fabrication procedures and is produced by industrially favorable techniques, rendering it capable of efficiently supporting small amounts of precious metal catalyst nanoparticles in various PEM applications.
机译:改善质子交换膜燃料电池(PEMFC)中每个组件之间的界面接触可导致功率密度和Pt利用率显着提高。在这项工作中,催化剂层和气体扩散层(GDL)之间的连接通过螺旋状碳纳米纤维的直接附着而大大增强,从而在电互连中产生了分层结构。另一种新型GDL是通过在商用碳纸上喷涂一层Pd_(2)C_(60)前驱体薄层,然后化学气相沉积生长而产生的,该纳米纤维的表面形态良好,围绕着存在于其中的微纤维。商业复写纸。随后的溶剂热沉积铂纳米粒子允许评估其在阴极H _(2)/ O _(2)PEMFC环境中作为气体扩散电极的适用性。降低的电荷转移电阻和提高的Pt利用率相结合,归因于其独特的线状外观和坚固的性能。所制造的不含微孔层的游离GDL适用于相对苛刻的膜电极组件制造程序,并通过工业上有利的技术生产,使其能够在各种PEM应用中有效地支撑少量的贵金属催化剂纳米颗粒。

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