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Dielectrophoretic deposition of graphite oxide soot particles

Author(s)
Hong, S.Jung, S.Kang, S.Kim, Y.Chen, X.Stankovich, S.Ruoff, S.R.Baik, S.
Issued Date
2008
DOI
10.1166/jnn.2008.076
URI
https://scholarworks.unist.ac.kr/handle/201301/54407
Fulltext
https://www.ingentaconnect.com/content/asp/jnn/2008/00000008/00000001/art00046;jsessionid=3wru25tw5e78m.x-ic-live-02
Citation
JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY, v.8, no.1, pp.424 - 427
Abstract
Alternating current dielectrophoresis in water was used to position graphite oxide soot (GO-soot) particles generated by rapid thermal expansion of graphite oxide under inert gas. The dielectrophoretic deposition was carried out at a frequency of 10 MHz and a peak-to-peak voltage of 10 V, and the deposited particles were analyzed using scanning electron microscopy. The vertical cross section, obtained by focused ion beam cutting, shows the wrinkled layers of the GO-soot particles and cavities between the layers. The electrical transport measurements show typical characteristics of metal-like pathways. The improved electrical contact between electrodes and GO-soot, probably due to the thin platelet structure of GO-soot, makes the material favorable for electrical device applications. The results demonstrate that AC dielectrophoresis can be used to selectively deposit graphite oxide soot particles at desired locations. Copyright © 2008 American Scientific Publishers All rights reserved.
Publisher
American Scientific Publishers
ISSN
1533-4880
Keyword (Author)
DielectrophoresisElectrical transport measurementGraphite oxide sootPositioning
Keyword
Electrical transport measurementGraphite oxide soot (GO-soot) particlesPlatelet structureElectrodesElectrophoresisFocused ion beamsScanning electron microscopyThermal expansionGraphite

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