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Structural Flexibility in Activated Carbon Materials Prepared under Harsh Activation Conditions

机译:在苛刻活化条件下制备的活性炭材料的结构灵活性

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摘要

Although traditionally high-surface area carbon materials have been considered as rigid structures with a disordered three dimensional (3D) network of graphite microdomains associated with a limited electrical conductivity (highly depending on the porous structure and surface chemistry), here we show for the first time that this is not the case for activated carbon materials prepared using harsh activation conditions (e.g., KOH activation). In these specific samples a clear structural re-orientation can be observed upon adsorption of different organic molecules, the structural changes giving rise to important changes in the electrical resistivity of the material. Whereas short chain hydrocarbons and their derivatives give rise to an increased resistivity, the contrary occurs for longer-chain hydrocarbons and/or alcohols. The high sensitivity of these high-surface area carbon materials towards these organic molecules opens the gate towards their application for sensing devices.
机译:尽管传统上将高表面积碳材料视为具有无序三维(3D)石墨微区网络的刚性结构,而石墨微区却与有限的电导率相关(高度取决于多孔结构和表面化学性质),但我们在这里展示了第一个对于使用苛刻的活化条件(例如KOH活化)制备的活性炭材料,情况并非如此。在这些特定的样品中,通过吸附不同的有机分子,可以观察到清晰的结构重新取向,结构变化引起材料电阻率的重要变化。短链烃及其衍生物提高了电阻率,而长链烃和/或醇则相反。这些高表面积碳材料对这些有机分子的高度敏感性为它们在传感设备中的应用打开了大门。

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