Title :
Characterization of three-dimensional nano-carbon field emission emitters
Author :
Wang, H.-X. ; Jiang, N. ; Sasaoka, H. ; Nishimura, K.
Author_Institution :
R&D Div., Kochi FEL Co., Ltd., Kochi, Japan
Abstract :
A unique three-dimensional nano-carbon electron emitter film with high emission current density at low electric field has been developed on stainless steel substrate by a direct current plasma chemical vapor deposition system. Scanning electron microscopy image taken from this film indicates that the film contains cone-like emitters whose array density is about 3×106/cm2. The center of each emitter is a carbon nanoneedle, and many carbon nano-walls are grown from the needle. Transmission electron microscopy observation reveals that the needles are hollow cone shape with bamboo-joint like structures on the side surface. Carbon nano-wall growth just starts from the bamboo joints. Raman spectroscopy was used to evaluate its graphitization degree and crystallinity. The I-V characteristic exhibits an emission current density of 143mA/cm2 at 2.2V/μm, and the field emission current is durable, making it possibly suitable for developing field emission devices.
Keywords :
Raman spectra; carbon nanotubes; current density; field emitter arrays; nanoelectronics; plasma CVD; scanning electron microscopy; transmission electron microscopy; C; I-V characteristic; Raman spectroscopy; bamboo-joint like structures; carbon nanoneedle; carbon nanowall growth; carbon nanowalls; cone-like emitters; crystallinity; direct current plasma chemical vapor deposition system; emission current density; field emission devices; high emission current density; low electric field; scanning electron microscopy image; stainless steel substrate; three-dimensional nanocarbon field emission emitter array characterization; transmission electron microscopy observation; unique three-dimensional nanocarbon electron emitter film; Carbon; Carbon dioxide; Cathodes; Films; Joints; Nanostructures; Needles; Carbon materials; Chemical vapor deposition; Field emission; Nanocrystalline materials; Raman;
Conference_Titel :
Vacuum Nanoelectronics Conference (IVNC), 2012 25th International
Conference_Location :
Jeju
Print_ISBN :
978-1-4673-1983-6
Electronic_ISBN :
pending
DOI :
10.1109/IVNC.2012.6316957