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Activation of carbide-derived carbons: a route to materials with enhanced gas and energy storage properties

机译:碳化物衍生的碳的活化:通往具有增强的气体和能量存储特性的材料的途径

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摘要

Thermal halogenation of a wide range of metal carbides provides a simple route to a class of so-called carbide-derived carbon (CDC) materials. The porosity of the CDCs, which is mainly in the microporous regime, may be modulated by the choice of metal carbide precursor and halogenation temperature. However, although the pore size of CDCs can be fine-tuned by the choice of synthesis process, the maximum surface area achieved is only up to 2500 m~2 g~(-1), which limits their use in gas storage or in electrochemical capacitor applications that require larger surface areas. The article is focussed on what has and can be done to enhance the textural properties of CDCs via further post-synthesis treatments and the ramifications of such modifications on their gas/energy storage capacity. The main developments in physical and chemical activation of CDCs and consequences on gas and energy storage are summarised.
机译:多种金属碳化物的热卤化为一条所谓的碳化物衍生碳(CDC)材料提供了一条简单的途径。 CDC的孔隙率(主要在微孔状态)可以通过选择金属碳化物前体和卤化温度来调节。然而,尽管CDC的孔径可以通过选择合成工艺进行微调,但获得的最大表面积仅为2500 m〜2 g〜(-1),这限制了它们在气体存储或电化学中的使用。需要更大表面积的电容器应用。本文着重于通过进一步的后合成处理以及此类修饰对其气体/能量存储能力的影响来增强CDC的质地特性的方法。总结了CDC物理和化学活化的主要进展以及对气体和能量存储的影响。

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