DocumentCode :
1875913
Title :
Synthesis and field emission properties of carbon nanosheets
Author :
Wang, Jianjun ; Zhu, Mingyao ; Outlaw, Ron ; Zhao, Xin ; Manos, Dennis ; Holloway, Brian ; Mammana, Victor ; Ray, Mark ; Dalton, Jay
Author_Institution :
Dept. of Appl. Sci., Coll. of William & Mary, VA, USA
fYear :
2004
fDate :
11-16 July 2004
Firstpage :
222
Lastpage :
223
Abstract :
A nanometer edged two-dimensional graphite structure, carbon nanosheet, was synthesized by inductively coupled radio-frequency plasma enhanced chemical vapour deposition on a variety of substrates, including metals, semiconductors and insulators. The carbon nanosheets were characterized by scanning electron microscopy, high resolution transmission electron microscopy and Raman spectroscopy. Edges of nanosheets had a uniform thickness of about 1 nm. Typical nanosheets consisted of only a few atomic layers and had a graphitic structure. The high density of atomic scale vertical graphitic edges are potential sites for electron field emission. The carbon nanosheets had a turn-on (threshold 10μA/cm2) field of about 5 V/μm and a metallic behavior based on a linear Fowler-Nordheim plot. This sheet-like carbon nanostructure is expected to be a robust edge emitter.
Keywords :
Raman spectra; electron field emission; graphite; nanostructured materials; plasma CVD; scanning electron microscopy; transmission electron microscopy; C; Fowler-Nordheim plot; Raman spectroscopy; atomic layers; atomic scale vertical graphitic edges; carbon nanosheets; edge emitter; electron field emission; field emission properties; graphitic structure; high resolution transmission electron microscopy; inductively coupled radio-frequency plasma enhanced chemical vapour deposition; metallic behavior; scanning electron microscopy; sheet-like carbon nanostructure; turn-on field; two-dimensional graphite structure; Atomic layer deposition; Carbon dioxide; Chemicals; Couplings; Nanostructures; Plasma chemistry; Plasma properties; Radio frequency; Scanning electron microscopy; Transmission electron microscopy;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Vacuum Nanoelectronics Conference, 2004. IVNC 2004. Technical Digest of the 17th International
Print_ISBN :
0-7803-8397-4
Type :
conf
DOI :
10.1109/IVNC.2004.1354983
Filename :
1354983
Link To Document :
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