IP Library Granted Patent US 7,521,225
Granted Patent B2
US 7,521,225 · App. 10/865,318 · Granted Apr 21, 2009

Nanotube structures having a surfactant bilayer inner wall coating

Assignee: North Carolina State University
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Quick Facts
Patent No.
US 7,521,225
App. No.
10/865,318
Granted
Apr 21, 2009
Kind
B2
Abstract

Nanotubes and nanotube array structures comprise (a) a nanotube having an inner wall portion; and (b) a bilayer coating formed on the inner wall portions, with the bilayer coating comprised of surfactants. A secondary compound such as a protein, peptide or nucleic acid may be associated with the bilayer coating. The structures are useful for, among other things, affinity purification, catalysis, and as biochips.

Claims (25)

1. An article of manufacture comprising:

(a) a nanotube having an inner wall portion, said nanotube having (i) an inner diameter between 10 nanometers and 500 nanometers and (ii) a length from two to one thousand times said diameter; and

(b) a bilayer coating formed on and parallel to said inner wall portion, such that only the hydrophilic portion of the bilayer coating is in contact with said inner wall portion, with said bilayer coating comprised of (i) from 10 to 90 percent by weight surfactant and (ii) from 10 to 90 percent by weight water.

2. The article of claim 1 , wherein said surfactant comprises a phospholipid.

3. The article of claim 1 , further comprising a protein or peptide associated with said bilayer coating.

4. The article of claim 1 , wherein said nanotube has a diameter between 50 nanometers and 200 nanometers.

5. The article of claim 1 , wherein said nanotube is comprised of aluminum oxide.

6. A nanotube array comprising:

(a) a substrate having a plurality of nanotubes formed therein, each of said nanotubes having (i) an inner wall portion (ii) an inner diameter between 10 nanometers and 500 nanometers and (iii) a length from two to one thousand times said diameter; and

(b) a bilayer coating formed on and parallel to each of said inner wall portions, such that only the hydrophilic portion of the bilayer coating is in contact with said inner wall portions, with said bilayer coating comprised of (i) from 10 to 90 percent by weight surfactants and (ii) from 10 to 90 percent by weight water.

7. The nanotube array of claim 6 , wherein said surfactant comprises a phospholipid.

8. The nanotube array of claim 6 , further comprising a protein or peptide associated with said bilayer coating.

9. The nanotube array claim 6 , wherein each of said nanotubes has a diameter between 50 nanometers and 200 nanometers.

10. The nanotube array of claim 6 , wherein said nanotubes are comprised of aluminum oxide.

11. A patterned nanotube array comprising:

(a) a substrate having a plurality of nanotubes formed in separate and discrete regions therein, each of said nanotubes having (i) an inner wall portion, (ii) an inner diameter between 10 nanometers and 500 nanometers and (iii) a length from two to one thousand times said diameter; and

(b) a bilayer coating formed on and parallel to each of said inner wall portions, such that only the hydrophilic portion of the bilayer coating is in contact with said inner wall portion, with said bilayer coating comprised of (i) from 10 to 90 percent by weight surfactant and (ii) from 10 to 90 percent by weight water; and

(c) a secondary compound associated with said bilayer coating, wherein said secondary compound in each one of said separate and discrete regions differs from said secondary compound in each of the other of said separate and discrete regions.

12. The patterned nanotube array of claim 11 , wherein said surfactant comprises a phospholipid.

13. The patterned nanotube array of claim 11 , wherein said secondary compound comprises a protein or peptide.

14. The patterned nanotube array claim 11 , wherein each of said nanotubes has a diameter between 50 nanometers and 200 nanometers.

15. The patterned nanotube array of claim 11 , wherein said nanotubes are comprised of aluminum oxide.

16. The article of claim 1 , wherein said nanotube is open at both end portions thereof.

17. The nanotube array of claim 6 , wherein said nanotubes are open at both end portions thereof.

18. The patterned nanotube array of claim 11 , wherein said nanotubes are open at both end portions thereof.

Assignments (2)
CONFIRMATORY LICENSE Recorded Mar 25, 2015
From: NORTH CAROLINA STATE UNIVERSITY
To: ENERGY, UNITED STATES DEPARTMENT OF
Reel/Frame 035343/0615 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 5, 2004
From: SMIRNOV, ALEX I.
To: NORTH CAROLINA STATE UNIVERSITY
Reel/Frame 015217/0875 →
Continuity (2)
Provisional Application 6047820000 · Jun 13, 2003
Related Publication 20080318245A1 · Dec 25, 2008