IP Library Granted Patent US 6,986,876
Granted Patent B2
US 6,986,876 · App. 10/032,932 · Granted Jan 17, 2006

Method for forming composites of sub-arrays of single-wall carbon nanotubes

Assignee: William Marsh Rice University
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Quick Facts
Patent No.
US 6,986,876
App. No.
10/032,932
Granted
Jan 17, 2006
Kind
B2
Abstract

This invention relates generally to forming arrays of single-wall carbon nanotubes (SWNT). In one embodiment, the present invention involves forming a macroscopic molecular array of tubular carbon molecules, said method comprising the step of assembling subarrays of up to 10 6 single-wall carbon nanotubes into a composite array.

Claims (28)

1. A method of forming a macroscopic molecular array of tubular carbon molecules, said method comprising the step of assembling subarrays of at least about 10 6 single-wall carbon nanotubes into a composite array.

2. The method of claim 1 wherein all the subarrays have the same type of nanotubes.

3. The method of claim 1 wherein the subarrays have different types of nanotubes.

4. The method of claim 1 wherein the subarrays are made according to the method comprising:

(a) providing at least about 10 6 single-wall carbon nanotubes of substantially similar length in the range between 50 to 500 nm;

(b) introducing a linking moiety onto at least one end of the single-wall carbon nanotubes;

(c) providing a substrate coated with a material to which the linking moiety will attach; and

(d) contacting the single-wall carbon nanotubes containing a linking moiety with the substrate.

5. A method of forming a macroscopic molecular array of tubular carbon molecules, said method comprising the step of assembling subarrays of at least about 10 6 single-wall carbon nanotubes into a composite array wherein the subarrays are made according to the method comprising:

(a) providing at least about 10 6 single-wall carbon nanotubes of substantially similar length in the range between 50 to 500 nm;

(b) introducing a linking moiety onto at least one end of the single-wall carbon nanotubes;

(c) providing a substrate coated with a material to which the linking moiety will attach; and

(d) contacting the single-wall carbon nanotubes containing a linking moiety with the substrate, wherein the substrate comprises a substance selected from the group consisting of gold, mercury and indium-tin-oxide.

6. A method of forming a macroscopic molecular array of tubular carbon molecules, said method comprising the step of assembling subarrays of at least about 10 6 single-wall carbon nanotubes into a composite array wherein the subarrays are made according to the method comprising:

(a) providing at least about 10 6 single-wall carbon nanotubes of substantially similar length in the range between 50 to 500 nm;

(b) introducing a linking moiety onto at least one end of the single-wall carbon nanotubes;

(c) providing a substrate coated with a material to which the linking moiety will attach; and

(d) contacting the single-wall carbon nanotubes containing a linking moiety with the substrate, wherein the linking moiety comprises a moiety selected from the group consisting of —S—, —S—(CH 2 ) n —NH—, and —SiO 3 (CH 2 ) 3 NH—.

7. A method of forming a macroscopic molecular array of tubular carbon molecules, said method comprising the step of assembling subarrays of least about 10 6 single-wall carbon nanotubes into a composite array wherein the subarrays are made according to the method comprising:

(a) providing a nanoscale array of microwells on a substrate;

(b) depositing a metal catalyst in each of said microwells; and

(c) directing a stream of hydrocarbon or CO feedstock gas at said substrate under conditions that effect growth of single-wall carbon nanotubes from each microwell.

8. The method of claim 7 further comprising applying an electric field when growing the single-wall carbon nanotubes.

9. A method of forming a macroscopic molecular array of tubular carbon molecules, said method comprising the step of assembling subarrays of at least about 10 6 single-wall carbon nanotubes into a composite array wherein the subarrays are made according to the method comprising:

(a) providing a surface comprising purified single-wall carbon nanotube material;

(b) subjecting the surface to oxidizing conditions sufficient to cause short lengths of broken single-wall carbon nanotubes to protrude up from the surface; and

(c) applying an electric field to the surface to cause the single-wall carbon nanotubes to align in an orientation generally perpendicular to the surface and coalesce into an array.

10. The method of claim 9 wherein the oxidizing conditions comprise heating the surface to about 500° C. in an atmosphere of oxygen and CO 2 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 9, 2003
From: SMALLEY, RICHARD E.; COLBERT, DANIEL T.; DAI, HONGJIE; LIU, JIE; RINZLER, ANDREW G.; HAFNER, JASON H.; SMITH, KENNETH A.; GUO, TING; NIKOLAEV, PAVEL; THESS, ANDREAS
To: WILLIAM MARSH RICE UNIVERSITY
Reel/Frame 014047/0013 →
Continuity (8)
Division 0938054500
Provisional Application 6006732500 · Dec 5, 1997
Provisional Application 6006453100 · Nov 5, 1997
Provisional Application 6006367500 · Oct 29, 1997
Provisional Application 6005503700 · Aug 8, 1997
Provisional Application 6004785400 · May 29, 1997
Provisional Application 6004015200 · Mar 7, 1997
Related Publication 20020136683A1 · Sep 26, 2002