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Excellent field emission device structures over a large area have been achieved with these fabrication methods.
A diode-type field emission device is prepared by using TFEs.
This system can be used to power an electromagnetic emission device.
Finally, a brief description of the operation and design of such a "photon-assisted field emission device" is given.
Multiwall carbon nanotubes (MWCNTs) were spin-coated onto a graphene film on a transparent, flexible substrate to form the cathode of the field emission device.
Zinc oxide (ZnO) nanorods were vertically grown on the surface of graphene sheets by chemical vapor deposition, and their use in a field emission device was demonstrated.
Similar(29)
Metal nanoparticle grafted graphene films (GFs) form a new composite for electron field emission devices.
Graphene-Au hybrid materials show promise for applications ranging from biosensing to field emission devices.
Therefore, TFEs with light reflector have a strong potential in field emission devices.
The goal is to realize nanotips at the surface to get new electron emission devices with low applied voltages.
The interesting field emission results of these devices suggest the potential of diamond/carbon emission devices beyond conventional vacuum microelectronics is significant.
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