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Arc-discharge in solution: A novel synthesis method for carbon nanotubes and in situ decoration of carbon nanotubes with nanoparticles.

机译:溶液中的电弧放电:一种新的合成碳纳米管的方法,以及用纳米粒子原位装饰碳纳米管的方法。

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摘要

During the last decade, carbon nanotubes (CNTs) have been envisioned for a host of different new applications. One of the objectives of the present research is to develop a simplified synthesis method for the production of large-scale, low-cost carbon nanotubes with functionality.; Herein, a unique, simple, inexpensive and one-step synthesis route of CNTs and CNTs decorated with nanoparticles is reported. The method is simple arc-discharge in solution (ADS). For this new method, a full-fledged optoelectronically controlled instrument is reported here to achieve high efficiency and continuous bulk production of CNTs. In this system, a constant gap between the two electrodes is maintained using a photosensor which allows a continuous synthesis of the carbon nanostructures. The system operates in a feedback loop consisting of an electrode-gap detector and an analogue electronic unit, as controller. This computerized feed system was also used in single process step to produce in situ-decorated CNTs with a variety of industrially important nanoparticles. To name a few, we have successfully synthesized CNTs decorated with 3--4 nm ceria, silica and palladium nanoparticles for many industrially relevant applications. This process can be extended to synthesize decorated CNTs with other oxide and metallic nanoparticles.; Sixty experimental runs were carried out for parametric analysis varying process parameters including voltage, current and precursors. The amount of yield with time, rate of erosion of the anode, and rate of deposition of carbonaceous materials on the cathode electrode were investigated. Normalized kinetic parameters were evaluated for different amperes from the sets of runs. The production rate of pristine CNT at 75 A is as high as 5.89 +/- 0.28 g.min-1.; In this study, major emphasis was given on the characterizations of CNTs with and without nanoparticles using various techniques for surface and bulk analysis of the nanostructures. The nanostructures were characterized using transmission electron microscopy, high resolution transmission electron microscopy, scanning transmission electron microscopy, energy dispersive spectroscopy and scanning electron microscopy, x-ray photo electron spectroscopy, x-ray diffraction studies, and surface area analysis.; Electron microscopy investigations show that the CNTs, collected from the water and solutions, are highly pure except for the presence of some amorphous carbon. (Abstract shortened by UMI.)
机译:在过去的十年中,碳纳米管(CNT)已被设想用于许多不同的新应用。本研究的目的之一是开发一种简化的合成方法,用于生产具有功能性的大规模,低成本碳纳米管。在本文中,报道了CNT和用纳米颗粒装饰的CNT的独特,简单,便宜且一步合成路线。该方法是溶液中的简单电弧放电(ADS)。对于这种新方法,这里报道了一种成熟的光电控制仪器,可实现高效率和连续批量生产CNT。在该系统中,使用允许连续合成碳纳米结构的光电传感器在两个电极之间保持恒定的间隙。该系统在由电极间隙检测器和模拟电子单元(作为控制器)组成的反馈回路中运行。该计算机化的进料系统还用于单个工艺步骤中,以生产具有多种工业上重要的纳米粒子的原位装饰碳纳米管。仅举几例,我们已经成功地合成了装饰有3--4 nm二氧化铈,二氧化硅和钯纳米粒子的CNT,用于许多与工业相关的应用。可以扩展该过程以与其他氧化物和金属纳米颗粒合成修饰的CNT。进行了六十次实验运行以进行参数分析,以改变包括电压,电流和前驱物在内的各种工艺参数。研究了随时间变化的产量,阳极的腐蚀速率以及碳质材料在阴极上的沉积速率。针对来自运行组的不同安培数,对归一化的动力学参数进行了评估。原始碳纳米管在75 A下的生产率高达5.89 +/- 0.28 g.min-1。在这项研究中,主要强调了使用各种技术对纳米结构进行表面和本体分析的有无纳米碳纳米管的表征。纳米结构使用透射电子显微镜,高分辨率透射电子显微镜,扫描透射电子显微镜,能量色散光谱和扫描电子显微镜,X射线光电子光谱,X射线衍射研究和表面积分析来表征。电子显微镜研究表明,从水和溶液中收集的碳纳米管是高纯度的,除了存在一些无定形碳。 (摘要由UMI缩短。)

著录项

  • 作者

    Bera, Debasis.;

  • 作者单位

    University of Central Florida.;

  • 授予单位 University of Central Florida.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 155 p.
  • 总页数 155
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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