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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Additive-Free Assemblies of Ramified Single-Walled Carbon Nanotubes
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Additive-Free Assemblies of Ramified Single-Walled Carbon Nanotubes

机译:支化单壁碳纳米管的无添加剂组件

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Carbon nanotubes (CNTs) are difficult to process, and their assembly in macroscopic materials that allow us to benefit from the exceptional properties of the nanotubes is of crucial interest for applications. The developed CNT processing procedures usually involve additives that remain in the final product and are known to diminish the properties of the CNT-based material. Here, we propose a multistep approach to process single-walled carbon nanotubes (SWNTs) and obtain macroscopic additive-free SWNT materials. High-quality dispersion of purified SWNTs is first induced in polar solvent due to their preceding reduction reaction with an alkali metal. The partial debundling process occurring at this stage leads to ramified SWNTs. They can then be self-assembled by attractive intermolecular forces through a controlled destabilization of the dispersions by a simple oxidation. Swollen gels of SWNTs are formed at an air/solvent interface. After freeze-drying, the additive-free SWNT material shows a hierarchical structure with highly interconnected SWNTs. Thanks to the obtained ramification of the SWNTs, these latter are able to well entangle what guarantees the robustness of the obtained additive-free SWNT material. Moreover, this integrated process offers an increase of the accessible surface compared to that of the raw bundled SWNTs. The obtained assembled SWNTs show an improved adsorption capacity.
机译:碳纳米管(CNT)难以加工,其在宏观材料中的组装使我们能够从纳米管的出色性能中受益,这对应用至关重要。发达的CNT处理程序通常涉及保留在最终产品中的添加剂,已知这些添加剂会降低CNT基材料的性能。在这里,我们提出了一种多步骤方法来处理单壁碳纳米管(SWNT),并获得宏观的无添加剂SWNT材料。由于极性先与碱金属发生还原反应,因此首先在极性溶剂中诱导了纯化的SWNT的高质量分散。在此阶段发生的部分分拆过程导致分叉的单壁碳纳米管。然后可以通过有吸引力的分子间力通过简单的氧化控制分散体的不稳定来使它们自组装。 SWNT的凝胶在空气/溶剂界面形成。冷冻干燥后,不含添加剂的SWNT材料显示出具有高度互连的SWNT的分层结构。由于获得了单壁碳纳米管的分枝,这些单壁碳纳米管能够很好地缠结在一起,从而保证了所获得的不含添加剂的单壁碳纳米管材料的坚固性。此外,与原始捆绑SWNT相比,这种集成工艺可提供更多的可触及表面。所得组装的SWNT显示出改善的吸附能力。

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