首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Fiber containment for improved laboratory handling and uniform nanocoating of milligram quantities of carbon nanotubes by atomic layer deposition
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Fiber containment for improved laboratory handling and uniform nanocoating of milligram quantities of carbon nanotubes by atomic layer deposition

机译:通过原子层沉积来改善实验室处理和毫克数级碳纳米管均匀纳米涂层的纤维密闭性

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摘要

The presence of nanostructured materials in the workplace is bringing attention to the importance of safe practices for nanomaterial handling. We explored novel fiber containment methods to improve the handling of carbon nanotube (CNT) powders in the laboratory while simultaneously allowing highly uniform and controlled atomic layer deposition (ALD) coatings on the nanotubes, down to less than 4 nm on some CNT materials. Moreover, the procedure yields uniform coatings on milligram quantities of nanotubes using a conventional viscous flow reactor system, circumventing the need for specialized fluidized bed or rotary ALD reactors for laboratory-scale studies. We explored both fiber bundles and fiber baskets as possible containment methods and conclude that the baskets are more suitable for coating studies. An extended precursor and reactant dose and soak periods allowed the gases to diffuse through the fiber containment, and the ALD coating thickness scaled linearly with the number of ALD cycles. The extended dose period produced thicker coatings compared to typical doses on CNT controls not encased in the fibers, suggesting some effects due to the extended reactant dose. Film growth was compared on a range of single-walled NTs, double-walled NTs, and acid-functionalized multiwalled NTs, and we found that ultrathin coatings were most readily controlled on the multiwalled NTs.
机译:工作场所中纳米结构材料的存在正引起人们对安全实践对纳米材料处理的重要性的关注。我们探索了新颖的纤维遏制方法,以改善实验室中碳纳米管(CNT)粉末的处理能力,同时允许在纳米管上高度均匀且可控的原子层沉积(ALD)涂层,在某些CNT材料上低至小于4 nm。而且,该方法使用常规的粘性流反应器系统可在毫克量的纳米管上产生均匀的涂层,从而避免了需要专门用于实验室规模研究的流化床或旋转ALD反应器。我们研究了纤维束和纤维篮作为可能的围堵方法,并得出结论,这些篮更适合于涂层研究。延长的前驱物和反应物剂量以及浸泡时间可使气体扩散通过纤维密闭容器,并且ALD涂层厚度随ALD循环次数线性变化。与未包封在纤维中的CNT对照的典型剂量相比,延长的剂量期产生了较厚的涂层,这表明由于延长的反应物剂量而产生了一些影响。在一系列单壁NT,双壁NT和酸官能化的多壁NT上比较了膜的生长,我们发现,在多壁NT上最薄的涂层最容易控制。

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