JOURNAL ARTICLE

FABRICATION OF ELECTRON FIELD EMITTERS USING CARBON NANOTUBES

Young Chul ChoiYOUNG SOO PARKYOUNG HEE LEEWonbong ChoiNAE SUNG LEEJong Min KimCHEOL JIN LEEDAE WOON KIMTAE JAE LEE

Year: 2000 Journal:   International Journal of High Speed Electronics and Systems Vol: 10 (01)Pages: 5-11   Publisher: World Scientific

Abstract

Carbon nanotube (CNT)-based field emission displays (FEDs) have been fabricated using well-aligned nanotubes on substrates in situ grown by thermal chemical vapor deposition (CVD), and paste squeeze and surface rubbing techniques. Although the former seems to be an ultimate approach for CNT-based FED, a large area synthesis and uniform field emission over the entire area is not yet easily accessible. On the other hand, the latter is fully scalable on glass substrates and shows very high luminance of 1800 cd/m 2 at 4 V/μm. The degradation of emission currents for single-wall carbon nanotubes was less than 10% in electrical aging tests. Large field-enhancement factors (23,000–46,000) and low turn-on voltages (1.5-3 V/μm) were attributed to well-aligned carbon nanotubes on substrates and a large number density of carbon nanotubes of 5-10 μm -2 , which was confirmed by high-resolution scanning electron microscopy.

Keywords:
Carbon nanotube Field electron emission Materials science Chemical vapor deposition Nanotechnology Fabrication Scanning electron microscope Rubbing Carbon fibers Optoelectronics Field emission display Electron Composite material

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Topics

Carbon Nanotubes in Composites
Physical Sciences →  Materials Science →  Materials Chemistry
Nanotechnology research and applications
Physical Sciences →  Engineering →  Biomedical Engineering
Graphene research and applications
Physical Sciences →  Materials Science →  Materials Chemistry

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