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Zinc oxide (ZnO) nanorods have been widely investigated in applications such as ultraviolet nanolaser sources, gas sensors, solar cells, and field emission display devices because they have a direct band gap of 3.37 eV and a large exciton binding energy of 60 meV.
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Owing to enormous growing interest regarding the graphene based field emission display device, we have reported a very simple route to synthesis amorphous graphene (a-Gs) by ultra-sonication assisted unzipping of low-temperature synthesized amorphous carbon nanotubes.
The approach here is capable of clarifying the design issues influencing the final pressure relevant to the field-emission display devices.
The nanotube with open edges is an excellent candidate for designing efficient tip for atomistic scanning probes or field emission display (FED) devices.
In cathode ray tubes, field emission display (=FED) panels and other devices, the electron current emitted from the cathode needs to be modulated.
Tin oxide is a versatile wide band gap (3.6 eV at 300 K) [2], n-type semiconducting oxide with an extensive potential of applications including solid-state gas sensors [3], dye-based solar cells [4], field emission displays [5], luminescent devices [6].
Field emission measurements show that GaN nanopencils film has high stability with a lower turn-on field of 3.5 V/µm, which is sufficient for application in field emission flat panel displays and cold electron sources in display devices.
The resulting PL spectra are observed to have an almost white emission from the composite structure which can be very useful for the display devices.
They are all just video display devices".
"Actually, we're looking at novel display devices.
Display devices convey information in visible form from electronic devices to human viewers.
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