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Biomass-derived nitrogen and sulfur co-doped carbon microtubes for the oxygen reduction reaction

机译:Biomass-derived氮和硫co-doped碳超小型电子管的氧气减少反应

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摘要

The development of environmentally friendly methods for the fabrication of new energy materials is being constantly pursued to relieve the global environmental and energy issues. During the past decade, carbon-based metal-free electrocatalysts with enhanced electrocatalytic performances by multiple heteroatom doping and superior electrical conductivity have shown their great potential to replace noble metal electrocatalysts in fuel cells. However, the fabrication of highly efficient carbon-based electrocatalysts from biomass and environmental waste remains challenging. Herein, we report the facile and scalable fabrication of nitrogen and sulfur co-doped carbon microtubes (N,S-CMTs) by pyrolysis of catkins (environmental pollutant) having adsorbed toxic dyes (water contaminant). With optimized parameters such as conductivity, doping, porosity, and surface area, the N,S-CMTs demonstrate significantly enhanced electrocatalytic performances in the oxygen reduction reaction (ORR) compared with those of commercial 20% Pt/C. Our work offers a promising alternative to platinum-based electrocatalysts toward the ORR in fuel cell applications.
机译:环境友好型的发展为制造新能源的方法材料被不断的追求来缓解全球环境和能源问题。在过去的十年中,碳基不含金属的与增强electrocatalysts electrocatalytic由多个杂原子掺杂和表演优越的电导率显示他们巨大的潜力来取代贵金属electrocatalysts燃料电池。高效的制造以碳为基础electrocatalysts从生物和环境浪费仍具有挑战性。肤浅和氮和可伸缩的制造碳硫co-doped超小型电子管(N, S-CMTs)热解开花(环境污染物)在吸附有毒染料(水污染物)。优化参数如电导率、掺杂、孔隙率和表面积,N, S-CMTs证明显著增强electrocatalytic表演的氧气还原反应(ORR)相比商业Pt / C的20%。替代铂类electrocatalysts或者在燃料电池的应用程序。

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