Mechanism of Very Large Scale Assembly of SWNTs in Template Guided Fluidic Assembly Process

Jaber-Ansari, Laila and Hahm, Myung Gwan and Somu, Sivasubramanian and Sanz, Yolanda Echegoyen and Busnaina, Ahmed and Jung, Yung Joon. (2009) Mechanism of Very Large Scale Assembly of SWNTs in Template Guided Fluidic Assembly Process. Journal of the American Chemical Society, 131 (2). p. 804. ISSN 0002-7863

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Abstract

Very large scale patterned single-walled carbon nanotube (SWNT) networks were fabricated using a newly developed template guided fluidic assembly process. A mechanism for SWNT assembly and their control is described here. To maximize the directed assembly efficiency of SWNTs toward a wafer level SWNT deposition, Si or SiO2 substrate was pretreated with precisely controlled SF6, O2, and Ar plasma. Chemical and physical properties of the surface were characterized using several surface characterization techniques to investigate and control the mechanism of SWNT assembly. We found that hydrophilic chemical groups such as hydroxides were created on the silicon or silicon oxide surface through the controlled plasma treatment and fluidic SWNT dip-coating process. Also we found that nanoscale rough surface structures formed during the plasma treatment significantly increased the number of dangling bonds and hydroxide functional groups on the surface. These combined chemical and physical enhancements that attract SWNTs in the aqueous solution enable us to build highly organized and very large scale SWNT network architectures effectively in various dimensions and geometries.

Item Type: Article
Additional Information: Reprinted with permission from "Jaber-Ansari, Laila, et al. 'Mechanism of Very Large Scale Assembly of SWNTs in Template Guided Fluidic Assembly Process.' J. Am. Chem. Soc. 131.2 (2009): 804–808." Copyright 2009 American Chemical Society.
InterNano Taxonomy: Nanomanufacturing Processes > Assembly Techniques
Nanoscale Objects and Nanostructured Materials > Nanotubes > Carbon nanotubes
Collections: Nanomanufacturing Research Collection
Related URLs:
Depositing User: Rebecca Reznik-Zellen
Date Deposited: 05 Nov 2009 16:42
Last Modified: 05 Nov 2009 16:42
URI: http://eprints.internano.org/id/eprint/177

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