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A nitrogen-doped mesoporous carbon containing an embedded network of carbon nanotubes as a highly efficient catalyst for the oxygen reduction reaction

机译:包含一个一个nitrogen-doped介孔碳嵌入式网络碳纳米管的高度高效的氧还原催化剂反应

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摘要

A nitrogen-doped mesoporous carbon containing a network of carbon nanotubes (CNTs) was produced for use as a catalyst for the oxygen reduction reaction (ORR). SiO2 nanoparticles were decorated with clusters of Fe atoms to act as catalyst seeds for CNT growth, after which the material was impregnated with aniline. After polymerization of the aniline, the material was pyrolysed and the SiO2 was removed by acid treatment. The resulting carbon-based hybrid also contained some Fe from the CNT growth catalyst and was doped with N from the aniline. The Fe-N species act as active catalytic sites and the CNT network enables efficient electron transport in the material. Mesopores left by the removal of the SiO2 template provide short transport pathways and easy access to ions. As a result, the catalyst showed not only excellent ORR activity, with 59 mV more positive onset potential and 30 mV more positive half-wave potential than a Pt/C catalyst, but also much longer durability and stronger tolerance to methanol crossover than a Pt/C catalyst.
机译:一个包含一个nitrogen-doped介孔碳产生了网络碳纳米管(碳纳米管)作为氧还原催化剂使用反应(ORR)。集群的铁原子作为催化剂种子问增长,之后的材料与苯胺浸渍。苯胺的聚合材料热解二氧化硅是被酸治疗。包含一些铁问增长的催化剂并从苯胺掺杂N。物种作为活性催化网站和问网络支持高效的电子传递材料。二氧化硅模板提供短的运输途径和容易获得离子。催化剂显示不仅出色的奥尔活动,其中59 mV更积极的开始潜力和30 mV更积极的半波潜在的Pt / C催化剂,但也很多久耐用性和更强的耐受性比Pt / C催化剂甲醇交叉。

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