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3D-Graphitized and Iron Modified Carbon Aerogels for Sustainable Energy Applications

机译:用于可持续能源应用的3D图形化和铁改性碳气凝胶

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3D-carbon aerogel nanomatrix has been modified with iron nitrate in the amounts of 10 and 20 wt. % by wet incipient method. The crystal structure, morphology, and electrocatalytic activity of the formed nanocomposites have been studied in comparison to the unmodified carbon aerogels after their heat-treatment at 900°C, 1200°C and 1400°C in argon. The mass and specific surface area losses in these materials reduced with iron doping is clear from BET isotherms and BJH pore size analysis. The HRTEM analysis confirms the presence of uniformly distributed ~43.5nm iron nanoparticles surrounded by graphite layers. The XRD analysis show that the level of graphitization increases with the sintering temperature and the concentration of the iron-containing phase. The ORR electrocatalytic activity studies demonstrate the influence of the heat-treatment temperature of samples on the ORR activity. Temperature programed reduction is carried out to understand the reduction behavior of these catalysts to metallic iron, to use them as substrates for direct CNT growth.
机译:3D-碳气体纳米盐螺纹已通过铁硝酸铁的含量为10和20重量。湿初期方法%。已经研究了所形成的纳米复合材料的晶体结构,形态和电催化活性与在氩气中的900℃,1200℃和1400℃下的热处理后的未改性的碳气凝胶相比。这些材料中的质量和比表面积损失通过熨斗掺杂减少,从Bet等温线和BJH孔径分析中透明。 HRTEM分析证实存在均匀分布的〜43.5nm的铁纳米颗粒包围石墨层。 XRD分析表明,石墨化水平随着烧结温度和含铁相的浓度而增加。 ORR电催化活性研究证明了样品热处理温度对ORR活性的影响。进行温度的减少,以了解这些催化剂对金属铁的还原行为,以将它们用作直接CNT生长的基材。

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