Skip to main content
U.S. Department of Energy
Office of Scientific and Technical Information

Carbon nanotubes on a substrate

Patent ·
OSTI ID:874304

The present invention includes carbon nanotubes whose hollow cores are 100% filled with conductive filler. The carbon nanotubes are in uniform arrays on a conductive substrate and are well-aligned and can be densely packed. The uniformity of the carbon nanotube arrays is indicated by the uniform length and diameter of the carbon nanotubes, both which vary from nanotube to nanotube on a given array by no more than about 5%. The alignment of the carbon nanotubes is indicated by the perpendicular growth of the nanotubes from the substrates which is achieved in part by the simultaneous growth of the conductive filler within the hollow core of the nanotube and the densely packed growth of the nanotubes. The present invention provides a densely packed carbon nanotube growth where each nanotube is in contact with at least one nearest-neighbor nanotube. The substrate is a conductive substrate coated with a growth catalyst, and the conductive filler can be single crystals of carbide formed by a solid state reaction between the substrate material and the growth catalyst. The present invention further provides a method for making the filled carbon nanotubes on the conductive substrates. The method includes the steps of depositing a growth catalyst onto the conductive substrate as a prepared substrate, creating a vacuum within a vessel which contains the prepared substrate, flowing H2/inert (e.g. Ar) gas within the vessel to increase and maintain the pressure within the vessel, increasing the temperature of the prepared substrate, and changing the H2/Ar gas to ethylene gas such that the ethylene gas flows within the vessel. Additionally, varying the density and separation of the catalyst particles on the conductive substrate can be used to control the diameter of the nanotubes.

Research Organization:
Pacific Northwest National Laboratory (PNNL), Richland, WA (United States)
Sponsoring Organization:
USDOE
DOE Contract Number:
AC06-76RL01830
Assignee:
Battelle Memorial Institute (Richland, WA)
Patent Number(s):
6,361,861
OSTI ID:
874304
Country of Publication:
United States
Language:
English

References (29)

Unraveling Nanotubes: Field Emission from an Atomic Wire journal September 1995
Synthesis of Large Arrays of Well-Aligned Carbon Nanotubes on Glass journal November 1998
Nanocapillarity and Chemistry in Carbon Nanotubes journal December 1996
Single- and multi-wall carbon nanotube field-effect transistors journal October 1998
Nanotube Nanodevice journal October 1997
A simple chemical method of opening and filling carbon nanotubes journal November 1994
Crystalline Ropes of Metallic Carbon Nanotubes journal July 1996
Large-scale synthesis of carbon nanotubes journal July 1992
Synthesis of individual single-walled carbon nanotubes on patterned silicon wafers journal October 1998
A method for synthesizing large quantities of carbon nanotubes and encapsulated copper nanowires journal July 1996
Catalytic growth of carbon filaments journal January 1989
A Formation Mechanism for Catalytically Grown Helix-Shaped Graphite Nanotubes journal July 1994
Cobalt-catalysed growth of carbon nanotubes with single-atomic-layer walls journal June 1993
Capillarity-induced filling of carbon nanotubes journal January 1993
Relation between metal electronic structure and morphology of metal compounds inside carbon nanotubes journal December 1994
Large-scale production of single-walled carbon nanotubes by the electric-arc technique journal August 1997
Large-Scale Synthesis of Aligned Carbon Nanotubes journal December 1996
Coaxial Nanocable: Silicon Carbide and Silicon Oxide Sheathed with Boron Nitride and Carbon journal August 1998
Carbon Nanotube Quantum Resistors journal June 1998
Encapsulation of lanthanum carbide in carbon nanotubes and carbon nanoparticles journal January 1995
Carbon nanotubes synthesized in a hydrogen arc discharge journal May 1995
Helical microtubules of graphitic carbon journal November 1991
Synthesis and characterization of carbide nanorods journal June 1995
Aligned Carbon Nanotube Films: Production and Optical and Electronic Properties journal May 1995
Yttrium carbide in nanotubes journal April 1993
Aligned Carbon Nanotube Arrays Formed by Cutting a Polymer Resin--Nanotube Composite journal August 1994
Single Crystal Metals Encapsulated in Carbon Nanoparticles journal January 1993
A Carbon Nanotube Field-Emission Electron Source journal November 1995
Why are carbon filaments tubular? journal May 1984