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激光等离子体驱动合成碳基纳米材料

Laser-Plasma Driven Synthesis of Carbon-Based Nanomaterials.

作者信息

Barberio M, Antici P

机构信息

INRS-EMT, 1650 Boul. Lionel Boulet, J3X1S2, Varennes, Canada.

出版信息

Sci Rep. 2017 Sep 20;7(1):12009. doi: 10.1038/s41598-017-12243-4.

Abstract

In this paper we introduce a laser-plasma driven method for the production of carbon based nanomaterials and in particular bi- and few-layers of Graphene. This is obtained by using laser-plasma exfoliation of amorphous Graphite in a liquid solution, employing a laser with energy in the order of 0.5 J/mm. Raman and XPS analysis of a carbon colloidal performed at different irradiation stages indicate the formation of Graphene multilayers with an increasing number of layers: the amount of layers varies from a monolayer obtained in the first few seconds of the laser irradiation, up to two layers obtained after 10 s, and finally to Graphite and amorphous carbon obtained after 40 s of irradiation. The obtained colloidals are pure, without any presence of impurities or Graphene oxides, and can easily be deposited onto large surfaces (in the order of cm) for being characterized or for being used in diverse applications.

摘要

在本文中,我们介绍了一种用于生产碳基纳米材料,特别是双层和少层石墨烯的激光等离子体驱动方法。这是通过在液体溶液中对非晶态石墨进行激光等离子体剥离来实现的,使用的激光能量约为0.5 J/mm。在不同辐照阶段对碳胶体进行的拉曼和XPS分析表明,随着层数的增加形成了石墨烯多层:层数从激光辐照最初几秒获得的单层变化到10秒后获得的两层,最后到辐照40秒后获得的石墨和无定形碳。所获得的胶体是纯净的,没有任何杂质或氧化石墨烯的存在,并且可以很容易地沉积在大面积(厘米量级)上以进行表征或用于各种应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e902/5607279/9d0a02e9d76a/41598_2017_12243_Fig1_HTML.jpg

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