Synthesis of carbon nanostructures using the chemical vapor deposi-tion technique: An overview

Ali Roberto Ruiz Hernández, Adrián Gutiérrez Cruz, Daniela Luna, J. F. Vega, Gerardo Patino Guillén, Alan Arceta Lozano, J. Campos-Delgado
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引用次数: 1

Abstract

The boom in nanotechnology over the last three decades is undeniable. Responsible for this interest in nanomaterials are mainly the nanostructured forms of carbon, since historically they were the ones that inaugurated the study of nanomaterials with the discovery of fullerenes in 1985 and carbon nanotubes in 1991. Although a variety of techniques exist to produce these materials, chemical vapor deposition (CVD) is particularly valuable as it allows the production of a wide variety of carbon nanostructures, is versatile, scalable, easy to implement and relatively low cost. This review article highlights the importance of CVD and details its principles, operating conditions and parameters, as well as its main variants. A description of the technique used to produce fullerenes, nano-ceramics, carbon nanotubes, nanospheres, graphene and others is made, emphasizing the specific parameters for each synthesis.
利用化学气相沉积技术合成碳纳米结构:综述
纳米技术在过去三十年的蓬勃发展是不可否认的。对纳米材料产生兴趣的主要是碳的纳米结构形式,因为从历史上看,它们是1985年富勒烯和1991年碳纳米管发现纳米材料研究的开端。尽管存在多种技术来生产这些材料,化学气相沉积(CVD)特别有价值,因为它允许生产各种各样的碳纳米结构,是通用的,可扩展的,易于实施和相对较低的成本。本文综述了气相沉积的重要性,详细介绍了气相沉积的原理、操作条件和参数,以及气相沉积的主要变体。介绍了用于生产富勒烯、纳米陶瓷、碳纳米管、纳米球、石墨烯等的技术,并强调了每种合成方法的具体参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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