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Autonomous Multifunctional Nanobrushes-Autonomous Materials

机译:自主多功能纳米水中 - 自主材料

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In this work, taking advantage of carbon nanotubes' small size, and exceptional mechanical, chemical and electrical properties, we report on a series of nano-synthesis procedures that combine conventional chemical vapor deposition and selective substrate area growth followed by chemical functionalizations to fabricate functionalized nano-brushes from aligned carbon nanotube arrays and chemically selective functional groups. The high aspect ratio and small dimension, mechanical stability and flexibility, surface chemical and adhesive characteristics of carbon nanotubes provide opportunities to create nano-brushes with selected chemical functionalities. The nano-brushes are made from aligned multi-walled carbon nanotube bristles grafted onto long SiC fiber handles in various configurations and functionalized with various chemical functional groups. These nano-brushes can easily be manipulated physically, either manually or with the aid of motors. Here, we explain the autonomous characteristics of the functionalized nano-brushes employing functional chemical groups such that the nano-brush can potentially collect various metal particles, ions, and contaminants from liquid solutions and the air environment, autonomously. These functionalized multi-walled carbon nanotube based nano-brushes can work swiftly in both liquid and air environments. With surface modification and functionalization, the nanotube nano-brushes can potentially become a versatile nano-devices in many chemical and biological applications, where they can autonomously pick up the particles they encounter since they can be chemically programmed to function as Autonomous Chemical Nano Robots (ACNR).
机译:在这项工作中,利用碳纳米管的小尺寸和特殊的机械,化学和电性能,我们报告了一系列纳米合成程序,该纳米合成程序结合了常规化学气相沉积和选择性底物面积生长,然后用化学官能化制造官能化从对齐的碳纳米管阵列和化学选择性官能团的纳米刷。碳纳米管的高纵横比,机械稳定性和柔韧性,表面化学和粘合特性,提供了用所选化学函数创建纳米刷的机会。纳米刷由与各种构型的长SiC纤维手柄接枝并用各种化学官能团官能化的对齐的多壁碳纳米管刷毛制成。这些纳米刷可以手动或借助于电动机物理地操纵。在这里,我们解释了采用功能化学基团的官能化纳米刷的自主特性,使得纳米刷可以自主地收集来自液体溶液和空气环境的各种金属颗粒,离子和污染物。这些官能化的多壁碳纳米管基纳米刷可以在液体和空气环境中迅速工作。具有表面改性和功能化,纳米管纳米刷可能是许多化学和生物应用中的多功能纳米器件,在那里它们可以自主地拾取它们遇到的颗粒,因为它们可以化学编程为作为自主化学纳米机器人的功能( ACNR)。

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