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Pore-rich iron-nitrogen-doped carbon nanofoam as an efficient catalyst towards the oxygen reduction reaction

机译:毛孔丰富的铁氮掺杂碳纳米泡沫作为氧还原反应的有效催化剂

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Developing cost-effective electrocatalysts is crucial for oxygen reduction reactions. In this work, a highly active iron-nitrogen co-doped carbon nanofoam is proposed and developed via a facile salt-assisted pyrolysis process of chitooligosaccharides. i) Chitooligosaccharides, a nitrogen-rich polymer with high water solubility and high thermostability, induce a coordination reaction between iron ions and amino/hydroxyl groups, forming large active sites. ii) FeCl3/KCl salt, acting as a template, etching agent and catalyst for graphitization, facilitates the formation of pore-rich carbon, leading to enhanced mass transfer and electronic conduction. It has been found that this iron-nitrogen co-doped carbon nanofoam presents competitive activity over commercial Pt/C, as follows: i) a high onset potential approximately 0.965 V, ii) strong durability with a current retention rate of 88% after 30000 s, and iii) excellent fuel tolerance to methanol, ethanol and formate. This work provides a simple, low-cost and environmentally friendly method to prepare iron nitrogen co-doped carbon materials that has great potential to be extended to other catalysts for energy-related applications. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:开发具有成本效益的电催化剂对于氧还原反应至关重要。在这项工作中,提出了一种高活性的铁氮共掺杂碳纳米泡沫,并通过壳寡糖的简便盐辅助热解工艺进行了开发。 i)壳寡糖,一种具有高水溶性和高热稳定性的富氮聚合物,会引起铁离子与氨基/羟基之间的配位反应,从而形成较大的活性位点。 ii)FeCl3 / KCl盐充当模板,蚀刻剂和石墨化催化剂,有助于形成富孔碳,从而增强传质和电子传导。已经发现,这种铁-氮共掺杂的碳纳米泡沫表现出超过商业Pt / C的竞争活性,如下:i)约0.965 V的高启动电位,ii)30000后的持久耐久性和88%的电流保持率s)和iii)对甲醇,乙醇和甲酸具有出色的燃料耐受性。这项工作为制备铁氮共掺杂碳材料提供了一种简单,低成本且环保的方法,该方法具有很大的潜力,可以扩展到与能源相关的其他催化剂中。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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