Carbon nanotube material having an outer diameter less than 10 nm and a
number of walls less than ten are disclosed. Also disclosed are an
electron field emission device including a substrate, an optionally layer
of adhesion-promoting layer, and a layer of electron field emission
material. The electron field emission material includes a carbon nanotube
having a number of concentric graphene shells per tube of from two to
ten, an outer diameter from 2 to 8 nm, and a nanotube length greater than
0.1 microns. One method to fabricate carbon nanotubes includes the steps
of (a) producing a catalyst containing Fe and Mo supported on MgO powder,
(b) using a mixture of hydrogen and carbon containing gas as precursors,
and (c) heating the catalyst to a temperature above 950.degree. C. to
produce a carbon nanotube. Another method of fabricating an electron
field emission cathode includes the steps of (a) synthesizing electron
field emission materials containing carbon nanotubes with a number of
concentric graphene shells per tube from two to ten, an outer diameter of
from 2 to 8 nm, and a length greater than 0.1 microns, (b) dispersing the
electron field emission material in a suitable solvent, (c) depositing
the electron field emission materials onto a substrate, and (d) annealing
the substrate.