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首页> 外文期刊>ACS applied materials & interfaces >Nitrogen Self-Doped Porous Carbon from Surplus Sludge as Metal-Free Electrocatalysts for Oxygen Reduction Reactions
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Nitrogen Self-Doped Porous Carbon from Surplus Sludge as Metal-Free Electrocatalysts for Oxygen Reduction Reactions

机译:剩余污泥中的氮自掺杂多孔碳作为无金属的氧还原反应电催化剂

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Nitrogen self-doped porous carbon was prepared by calcination treatment of surplus sludge, a toxic byproduct from microbial wastewater treatments, and exhibited a mesoporous structure, as manifested in scanning and transmission electron microscopic measurements. Nitrogen adsorption/desorption studies showed that the porous carbon featured a BET surface area as high as 310.8 m~2/g and a rather broad range of pore size from 5 to 80 nm. X-ray photoelectron spectroscopic studies confirmed the incorporation of nitrogen into the graphitic matrix forming pyridinic and pyrrolic moieties. Interestingly, the obtained porous carbon exhibited apparent electrocatalytic activity in oxygen reduction in alkaline media, with the optimal temperatures identified within the range of 600 to 800 °C, where the number of electron transfers involved in oxygen reduction was estimated to be 3.5 to 3.7 and the performance was rather comparable to leading literature results as a consequence of deliberate engineering of the graphitic matrix by nitrogen doping.
机译:氮自掺杂多孔碳是通过对剩余污泥进行煅烧处理而制备的,剩余污泥是微生物废水处理产生的有毒副产物,并且具有介孔结构,这在扫描和透射电子显微镜测量中得到了证明。氮吸附/解吸研究表明,多孔碳的BET表面积高达310.8 m〜2 / g,孔径范围从5到80 nm不等。 X射线光电子能谱研究证实了氮被掺入形成吡啶和吡咯部分的石墨基体中。有趣的是,获得的多孔碳在碱性介质中的氧还原中表现出明显的电催化活性,确定的最佳温度在600至800°C的范围内,其中氧还原所涉及的电子转移数估计为3.5至3.7,并且由于通过氮掺杂对石墨基质进行了精心设计,因此该性能与领先的文献结果相当。

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