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Corking carbon nanotube cups with gold nanoparticles

机译:用金纳米粒子对碳纳米管杯进行软木塞

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Nitrogen doping of carbon nanotubes during chemical vapor deposition synthesis can create unique stacked cup-shaped structures termed as nitrogen-doped carbon nanotube cups (NCNCs). These cups have semielliptical hollow cavities and elevated reactivity which could lead to various applications. In this work, by applying intense ultrasonication to the as-synthesized NCNCs, we demonstrated an effective mechanical method to isolate the individual cups with opened cavities from their stacks. The graphitic structures of the isolated cups and their inherent nitrogen functionalities were characterized by comprehensive microscopic and spectroscopic methods. In particular, we quantitatively determined the existence of amine functionalities on NCNCs and found that they were preferentially distributed at the open edges of the cups, providing localized reactive sites. Further, by thiolating the amine groups with 3-mercapto-propionic acid, we were able to effectively cork the isolated cups by gold nanoparticles with commensurate diameters. These cup-shaped carbon nanomaterials with controlled inner volumes and gold nanoparticle corks could find potential applications as nanoscale reaction containers or drug delivery vehicles.
机译:在化学气相沉积合成过程中对碳纳米管进行氮掺杂可产生独特的堆叠杯状结构,称为氮掺杂碳纳米管杯(NCNC)。这些杯子具有半椭圆形的中空腔,并具有较高的反应活性,可导致各种应用。在这项工作中,通过对合成后的NCNC施加强烈的超声处理,我们展示了一种有效的机械方法,可将带有开孔的单个杯子从杯子中分离出来。通过全面的显微镜和光谱学方法对分离杯的石墨结构及其固有的氮功能进行了表征。特别是,我们定量确定了NCNC上胺官能团的存在,并发现它们优先分布在杯子的开口边缘,从而提供了局部的反应位点。此外,通过用3-巯基丙酸使胺基硫醇化,我们能够用直径相当的金纳米颗粒有效地塞住分离的杯子。这些具有可控内部容积和金纳米颗粒软木塞的杯状碳纳米材料可以作为纳米级反应容器或药物输送工具找到潜在的应用。

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