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Chemical and electrochemical characterization of porous carbon materials

机译:多孔碳材料的化学和电化学表征

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摘要

Chemical and electrochemical techniques have been used in order to asses surface functionalities of porous carbon materials. An anthracite has been chemically activated using both KOH and NaOH as activating agents. As a result, activated carbons with high micropore volume (higher than 1 cm~3/g) have been obtained. These samples were oxidized with HNO_3 and thermally treated in N_2 flow at different temperatures in order to obtain porous carbon materials with different amounts of surface oxygen complexes. Thermal treatment in H2 was also carried out. The sample treated with H2 was subsequently treated in air flow at 450 deg C. Thus, materials with very similar porous texture and widely different surface chemistry have been compared. The surface chemistry of the resulting materials was systematically characterized by TPD experiments and XPS measurements. Galvanostatic and voltammetric techniques were used to deepen into the characterization of the surface oxygen complexes. The combination of both, chemical and electrochemical methods provide unique information, regarding the key role of surface chemistry in improving carbon wettability in aqueous solution and the redox processes undergone by the surface oxygen groups. Both contributions are of relevance to understand the use of porous carbons as electrochemical capacitors.
机译:化学和电化学技术已被用于评估多孔碳材料的表面功能。无烟煤已使用 KOH 和 NaOH 作为活化剂进行化学活化。结果,得到了高微孔体积(高于1 cm~3/g)的活性炭。将样品用HNO_3氧化,并在不同温度下进行N_2流热处理,以获得具有不同量表面氧络合物的多孔碳材料。还进行了H2的热处理。随后用 H2 处理的样品在 450 °C 的气流中处理。因此,已经比较了具有非常相似的多孔质地和广泛不同的表面化学性质的材料。通过TPD实验和XPS测量系统地表征了所得材料的表面化学性质。使用恒电流和伏安技术来加深表征表面氧络合物。化学和电化学方法的结合提供了独特的信息,涉及表面化学在改善水溶液中碳润湿性方面的关键作用以及表面氧基团所经历的氧化还原过程。这两项贡献都与理解多孔碳作为电化学电容器的使用有关。

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