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Assessing the temporal stability of surface functional groups introduced by plasma treatments on the outer shells of carbon nanotubes

机译:评估通过等离子体处理在碳纳米管外壳上引入的表面官能团的时间稳定性

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摘要

Plasma treatments are emerging as superior efficiency treatment for high surface to volume ratio materials to tune functional group densities and alter crystallinity due to their ability to interact with matter at the nanoscale. The purpose of this study is to assess for the first time the long term stability of surface functional groups introduced across the surface of carbon nanotube materials for a series of oxidative, reductive and neutral plasma treatment conditions. Both plasma duration dose matrix based exposures and time decay experiments, whereby the surface energy of the materials was evaluated periodically over a one-month period, were carried out. Although only few morphological changes across the graphitic planes of the carbon nanotubes were found under the uniform plasma treatment conditions, the time dependence of pertinent work functions, supported by Raman analysis, suggested that the density of polar groups decreased non-linearly over time prior to reaching saturation from 7 days post treatment. This work provides critical considerations on the understanding of the stability of functional groups introduced across high specific surface area nano-materials used for the design of nano-composites, adsorptive or separation systems, or sensing materials and where interfacial interactions are key to the final materials performance.
机译:等离子体处理由于其在纳米级与物质相互作用的能力而逐渐成为一种高效率的处理方法,可用于高表面积体积比的材料,以调节官能团的密度并改变结晶度。这项研究的目的是首次评估在一系列氧化,还原和中性等离子体处理条件下,跨碳纳米管材料表面引入的表面官能团的长期稳定性。进行了基于等离子体持续时间剂量矩阵的暴露和时间衰减实验,从而在一个月的时间内定期评估了材料的表面能。尽管在均匀的等离子体处理条件下,在碳纳米管的石墨平面上只有很少的形态学变化,但是在拉曼分析的支持下,相关功函数的时间依赖性表明,极性基团的密度随时间呈非线性下降趋势。治疗后7天达到饱和。这项工作为理解跨高比表面积纳米材料(用于设计纳米复合材料,吸附或分离系统或传感材料)中引入的官能团的稳定性提供了重要的考虑因素,其中界面相互作用是最终材料的关键性能。

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