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Sulfur, Trace Nitrogen and Iron Codoped Hierarchically Porous Carbon Foams as Synergistic Catalysts for Oxygen Reduction Reaction

机译:硫,痕量氮和铁共掺杂多孔碳泡沫作为增氧还原反应的催化剂

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摘要

Sulfur, trace nitrogen and iron codoped, hierarchically porous carbon foams (HPCFs) were fabricated by directly pyrolyzing sulfur-enriched conductive polymer, poly(3,4-ethylenedioxythiphene)-polystyrenesulfonic acid (PEDOT-PSS) aerogels under argon atmosphere. This simple pyrolysis treatment results in the molecular rearrangement of heteroatom sulfur, adjacent carbons and trace nitrogen/iron from oxidants to form active catalytic sites of HPCFs. At the same time, the high porosity of HPCFs provides the large surface area for the uniform distribution of active sites, and allows rapid oxygen transport and diffusion. As a result, these HPCFs exhibit the enhanced catalytic performances for oxygen reduction reaction (ORR) via a direct four-electron reduction pathway in alkaline electrolyte. Besides, they also display a higher stability and better methanol/CO tolerance than the commercial Pt/C catalyst, which makes them promising low cost, non-precious-metal ORR catalysts for practical application in fuel cells and metal-air batteries.
机译:通过在氩气气氛下直接热解富硫的导电聚合物,聚(3,4-乙撑二氧噻吩)-聚苯乙烯磺酸(PEDOT-PSS)气凝胶,制得了硫,痕量氮和铁共掺杂的多层多孔碳泡沫(HPCF)。这种简单的热解处理导致杂原子硫,相邻碳原子和来自氧化剂的痕量氮/铁发生分子重排,从而形成HPCF的活性催化位点。同时,高孔隙度的HPCFs为活性部位的均匀分布提供了较大的表面积,并允许快速的氧气传输和扩散。结果,这些HPCF通过碱性电解质中的直接四电子还原途径表现出增强的氧还原反应(ORR)的催化性能。此外,它们还显示出比市售Pt / C催化剂更高的稳定性和更好的甲醇/ CO耐受性,这使其有希望成为低成本,非贵金属的ORR催化剂,可用于燃料电池和金属空气电池中。

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