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功能化多壁碳纳米管/金纳米颗粒复合材料

Functionalized multiwall carbon nanotube/gold nanoparticle composites.

作者信息

Kim Bumsu, Sigmund Wolfgang M

机构信息

Department of Materials Science & Engineering, University of Florida, 225 Rhines Hall, P.O. Box 116400, Gainesville, Florida 32611, USA.

出版信息

Langmuir. 2004 Sep 14;20(19):8239-42. doi: 10.1021/la049424n.

Abstract

Multiwall carbon nanotubes (MWCNTs) were chemically oxidized in a mixture of sulfuric acid and nitric acid (3:1) while being ultrasonicated. The effect of oxidative ultrasonication at room temperature on development of functional groups on the carbon nanotubes was investigated. The dispersability and the carboxylic acid group concentration of functionalized MWCNTs (fMWNTs) varied with reaction time. The concentration of carboxylic acid groups on fMWNTs increased from 4 x 10(-4) mol/g of fMWNTs to 1.1 x 10(-3) mol/g by doubling the treatment period from 4 to 8 h. The colloidal stability of aqueous fMWCNTs dispersions was enhanced through elongated oxidation. fMWCNTs that were reacted longer than 4 h did not precipitate in aqueous media for at least 24 h. The layer-by-layer self-assembly of polyelectrolytes on fMWCNTs was characterized by zeta potential measurements. The zeta potential of fMWCNTs changed from negative charge to positive charge when cationic polyelectrolytes were self-assembled on their surface. With addition of anionic polyelectrolytes, cationic polyelectrolyte coated fMWCNTs showed the expected charge reversal as expected for multilayer self-assembly. Complex formation of positively charged gold nanoparticles and negatively charged fMWCNTs was achieved with and without polyelectrolyte coatings by electrostatic interaction. The complex formation was characterized by high-resolution transmission electron microscopy and energy-dispersive X-ray spectroscopy. The here found complex formation of positively charged colloidal gold and defect sites on fMWNTs indicates the location of functional groups on carbon nanotubes. It is suggested that positively charged colloids such as gold nanoparticles could be used for detection of defect sites on carbon nanotubes.

摘要

多壁碳纳米管(MWCNTs)在硫酸和硝酸(3:1)的混合溶液中进行化学氧化,同时进行超声处理。研究了室温下氧化超声处理对碳纳米管上官能团形成的影响。功能化多壁碳纳米管(fMWNTs)的分散性和羧酸基团浓度随反应时间而变化。通过将处理时间从4小时延长至8小时,fMWNTs上羧酸基团的浓度从4×10⁻⁴摩尔/克fMWNTs增加到1.1×10⁻³摩尔/克。通过延长氧化时间,fMWCNTs水性分散体的胶体稳定性得到增强。反应时间超过4小时的fMWCNTs在水性介质中至少24小时不会沉淀。通过zeta电位测量对fMWCNTs上聚电解质的逐层自组装进行了表征。当阳离子聚电解质在其表面自组装时,fMWCNTs的zeta电位从负电荷变为正电荷。添加阴离子聚电解质后,阳离子聚电解质包覆的fMWCNTs如多层自组装预期的那样显示出预期的电荷反转。通过静电相互作用,在有和没有聚电解质涂层的情况下,实现了带正电的金纳米颗粒与带负电的fMWCNTs的复合物形成。通过高分辨率透射电子显微镜和能量色散X射线光谱对复合物形成进行了表征。此处发现的带正电的胶体金与fMWNTs上缺陷位点的复合物形成表明了碳纳米管上官能团的位置。有人提出,诸如金纳米颗粒之类的带正电胶体可用于检测碳纳米管上的缺陷位点。

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