Activation effect on carbon nanotubes
Particles, which may include nanoparticles, are mixed with carbon nanotubes and deposited on a substrate to form a cold cathode. The particles enhance the field emission characteristics of the carbon nanotubes. An additional activation step may be performed on the deposited carbon nanotube mixture to further enhance the emission of electrons.
1. An apparatus for activating carbon nanotubes laid out in a first pattern on a first substrate, comprising:
a second substrate;
a second pattern of adhesive material arranged on the second substrate, wherein the first pattern matches the second pattern so that the adhesive material contacts a material containing the carbon nanotubes when the apparatus is laid over the first substrate, wherein the first pattern comprises a plurality of separate regions where the material containing the carbon nanotubes is deposited.
2. A field emission cathode comprising:
a cathode structure; and
a CNT mixture deposited on the cathode structure having a density of less than 1×10 8 CNTs per square centimeter.
3. The field emission cathode as recited in claim 2 , wherein the diameters of the carbon nanotubes in the CNT mixture are approximately 1 nm.
4. The field emission cathode as recited in claim 2 , wherein the diameters of the carbon nanotubes in the CNT mixture are 1 nm.
5. A field emission cathode comprising:
a cathode structure; and
a CNT mixture deposited on the cathode structure having a density of less than or equal to 1×10 8 CNTs per square centimeter.
6. The field emission cathode as recited in claim 5 , wherein the diameters of the carbon nanotubes in the CNT mixture are approximately 1 nm.
7. The field emission cathode as recited in claim 5 , wherein the diameters of the carbon nanotubes in the CNT mixture are 1 nm.