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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Optimization of Sonication Parameters for Homogeneous Surfactant-Assisted Dispersion of Multiwalled Carbon Nanotubes in Aqueous Solutions
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Optimization of Sonication Parameters for Homogeneous Surfactant-Assisted Dispersion of Multiwalled Carbon Nanotubes in Aqueous Solutions

机译:均相表面活性剂辅助分散多壁碳纳米管在水溶液中的超声处理参数的优化

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摘要

The current study provides answers to two critical open questions concerning homogeneity of aqueous suspensions of carbon nanotubes by ultrasonic processing. The first is the dependence of tube dispersion quality on sonication duration and intensity, and the second is the identification of the appropriate conditions for retaining the highly desirable initial aspect ratio of the free-standing tubes in the dispersed state. A straightforward methodology based on nanotube agglomerate size analysis by liquid mode laser diffraction is suggested for quantifying the effects of sonication parameters on tube length and sample polydispersity. The technique, which is superior to currently suggested methods in that analysis of larger representative volumes is allowed and tube sedimentation effects are avoided, was tested across surfactant-assisted aqueous suspensions of multiwalled carbon nanotubes, while no apparent factors limit application to other types of suspensions. A ruling rationale for distinguishing between entangled states and individually suspended modes is presented, and the effects of surfactant concentration are discussed in the text. For the particular MWCNTs and experimental conditions investigated herein, an energy density rate of 7.7 J min(-1) mL(-1) applicable for a duration of 90 min was found optimum for achievement of suspension homogeneity without significant tube aspect ratio impairment.
机译:当前的研究为两个关键的悬而未决的问题提供了答案,这些问题涉及通过超声处理的碳纳米管水悬浮液的均匀性。第一个是管分散质量对超声持续时间和强度的依赖性,第二个是确定适当条件的条件,以保持分散状态下非常理想的独立式管的初始长宽比。提出了一种通过液相模式激光衍射基于纳米管附聚物尺寸分析的简单方法,用于量化超声处理参数对管长和样品多分散性的影响。该技术优于当前建议的方法,因为它允许在多壁碳纳米管的表面活性剂辅助水悬浮液中进行测试,而允许对较大的代表性体积进行分析并避免了管沉降效应,而没有明显的因素限制将其应用于其他类型的悬浮液。提出了区分缠结态和单独悬浮态的决定性原理,并在本文中讨论了表面活性剂浓度的影响。对于本文研究的特定MWCNT和实验条件,发现适用于90分钟持续时间的7.7 J min(-1)mL(-1)的能量密度速率是实现悬浮液均质性而不显着影响管长宽比的最佳选择。

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