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Probing of complex carbon nanofiber paper as gas-diffusion electrode for high temperature polymer electrolyte membrane fuel cell

机译:复杂碳纳米纤维纸作为高温高分子电解质膜燃料电池气体扩散电极的探索

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The development of fuel cells is an important part of alternative energy studies. High-temperature polymer electrolyte membrane fuel cell (HT-PEMFC) is a very promising and commercialized type of fuel cell since it allows the use of hydrogen contaminated with CO. However, current advances in HT-PEMFC are based on searching for more sustainable materials for the membrane electrode assembly. The key issue is to find new, more stable carbonaceous Pt-electrocatalyst supports instead of the traditional carbon black powder. In the present study, we primarily demonstrate a new electrode design concept. Complex carbon nanofiber paper (CNFP) electrodes, obtained by polyacrylonitrile (PAN) electrospinning with further pyrolysis at 900–1200 °C, are suitable for platinum deposition and were probed as the gas-diffusion electrode for HT-PEMFC. Complex composite electrodes were obtained by introducing zirconium and nickel salts into the electrospinning PAN solution. After pyrolysis, ZrO _( x ) and Ni(0) nanoparticles were distributed in the CNFP throughout the whole nanofiber volume, as it is seen in the high-resolution transmission electron microscopy images. The samples were thoroughly studied by X-ray photoelectron, Raman and impedance spectroscopy, cyclic voltammetry, and elemental analysis. The MEAs designed on platinized composite CNFPs demonstrate higher performance at 180 °C compared to non-composite ones and are comparable with commercial Celtec? P1000.
机译:燃料电池的开发是替代能源研究的重要组成部分。高温聚合物电解质膜燃料电池(HT-PEMFC)是一种非常有前途且商业化的燃料电池,因为它允许使用被CO污染的氢。但是,HT-PEMFC的最新进展是基于寻找更具可持续性的材料用于膜电极组件。关键问题是要找到新的,更稳定的碳质Pt电催化剂载体,而不是传统的炭黑粉末。在本研究中,我们主要演示一种新的电极设计概念。通过聚丙烯腈(PAN)静电纺丝并在900–1200°C下进一步热解获得的复合碳纳米纤维纸(CNFP)电极适用于铂沉积,并被用作HT-PEMFC的气体扩散电极。通过将锆和镍盐引入电纺PAN溶液中,可以获得复合电极。热解后,ZrO_(x)和Ni(0)纳米粒子在CNFP中分布在整个纳米纤维体积中,如在高分辨率透射电子显微镜图像中所见。通过X射线光电子,拉曼和阻抗谱,循环伏安法和元素分析对样品进行了彻底研究。与非复合材料相比,在镀铂复合CNFP上设计的MEA在180°C下表现出更高的性能,可与商用Celtec?媲美。 P1000。

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