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N-activated carbon fiber produced by oxidation process design and its application as supercapacitor electrode

机译:氧化工艺设计生产的N活化碳纤维及其在超级电容器电极中的应用

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摘要

There are three basic steps to activated carbon fibers (ACF) manufacturing, from PAN fiber: oxidation/stabilization, carbonization and activation. Carbon material, specially ACF is a very attractive material to be used as supercapacitor electrode. The literature describes carbon material surface chemistry importance for supercapacitors application, mainly nitrogen groups by N-doping. Oxidation/stabilization is an important non-explored factor that influence the surface chemical functionality. This work describes the influence of oxidation/stabilization process on ACF production, from textile PAN fiber, and the non-doping nitrogen surface chemistry characteristic caused by the oxidation process design. Its textural, structural and surface was evaluated for supercapacitor electrode. The results show that the oxidation degree can be used as a mechanism of textural and surface chemistry control. The surface chemistry is the key of this work, different oxidation conditions can produce nitrogen compounds that help to increase specific capacitance. The tests showed an increase in capacitance higher than 100% in comparison to the standard oxidation.
机译:从PAN纤维到活性炭纤维(ACF)的制造过程包括三个基本步骤:氧化/稳定化,碳化和活化。碳材料,特别是ACF,是用作超级电容器电极的极具吸引力的材料。文献描述了碳材料表面化学对于超级电容器应用的重要性,主要是通过N掺杂形成的氮基。氧化/稳定化是影响表面化学功能的重要未探索因素。这项工作描述了氧化/稳定化工艺对纺织PAN纤维生产ACF的影响,以及氧化工艺设计引起的非掺杂氮表面化学特性。对超级电容器电极的结构,结构和表面进行了评估。结果表明,氧化度可以作为质构和表面化学控制的机理。表面化学是这项工作的关键,不同的氧化条件会产生有助于增加比电容的氮化合物。测试表明,与标准氧化相比,电容的增加高于100%。

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