IP Library Granted Patent US 8,241,767
Granted Patent B2
US 8,241,767 · App. 12/700,742 · Granted Aug 14, 2012

Magnetic disk formed of nanotube arrays containing magnetic nanoparticles

Assignee: Sigma Pro Ltd. LLC
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,241,767
App. No.
12/700,742
Granted
Aug 14, 2012
Kind
B2
Abstract

A magnetic storage medium is formed of magnetic nanoparticles that are encapsulated within nanotubes (e.g., carbon nanotubes), which are arranged in a substrate to facilitate the reading and writing of information by a read/write head. The substrate may be flexible or rigid. Information is stored on the magnetic nanoparticles via the read/write head of a storage device. These magnetic nanoparticles are arranged into data tracks to store information through encapsulation within the carbon nanotubes. As carbon nanotubes are bendable, the carbon nanotubes may be arranged on flexible or rigid substrates, such as a polymer tape or disk for flexible media, or a glass substrate for rigid disk. A polymer may assist holding the nano-particle filled carbon-tubes to the substrate.

Claims (33)

1. A magnetic disk, comprising:

a substrate; and

a layer of magnetic media on said substrate, said magnetic media comprising:

a plurality of magnetic nanoparticles contained within a carbon nanotube; and

a plurality of said carbon nanotubes encapsulated in a matrix.

2. The magnetic disk of claim 1 , said layer further comprising a shunt layer, said shunt layer comprising:

a plurality of low coercivity magnetic nanoparticles contained within a carbon nanotube; and

a plurality of said carbon nanotubes encapsulated in a matrix.

3. The magnetic disk of claim 1 , said layer further comprising a plurality of bucky balls that reduce friction between said layer and a read/write head.

4. The magnetic disk of claim 1 , wherein said plurality of magnetic nanoparticles are selected from the group consisting of Cobalt (Co), Cobalt-nitride, Cobalt-oxide (Co— 0 ), Cobalt-palladium (Co—Pd), Cobalt-platinum (Co—Pt), Iron (Fe), Iron-Gold (Fe—Au), Iron-Chromium (Fe—Cr), Iron-Nitride (Fe—N), Iron-oxide (Fe 3 O 4 ), Iron-palladium (Fe—Pd), Fe—Zr—Nb—B, Mn-nitride (Mn—N), Nb—Fe—B, Nd—Fe—B—Nb—Cu, and Nickel (Ni).

5. The magnetic disk of claim 2 , wherein said plurality of low coercivity magnetic nanoparticles are selected from the group consisting of Mn—Zn, single crystal Mn—Zn, and Ni—Zn.

6. The magnetic disk of claim 1 , wherein said layer comprises a mono-layer of said carbon nanotubes.

7. The magnetic disk of claim 1 , wherein said carbon nanotubes are arranged into a data track.

8. The magnetic disk of claim 1 , wherein said matrix is comprised of High Density Poly Ethylene.

9. The magnetic disk of claim 1 , wherein said substrate is flexible.

10. The magnetic disk of claim 2 , wherein said plurality of low coercivity magnetic nanoparticles have low or near zero coercivity.

11. A magnetic disk, comprising:

a layer of magnetic media, comprising:

a plurality of magnetic nanoparticles contained within a carbon nanotube; and

a plurality of said carbon nanotubes encapsulated in a matrix.

12. The magnetic disk of claim 11 , said media further comprising a shunt layer, said shunt layer comprising:

a plurality of low coercivity magnetic nanoparticles contained within a carbon nanotube; and

a plurality of said carbon nanotubes encapsulated in a matrix.

13. The magnetic disk of claim 11 , said media further comprising a plurality of bucky balls that reduce friction between said layer and a read/write head.

14. The magnetic disk of claim 11 , wherein said plurality of magnetic nanoparticles are selected from the group consisting of Cobalt (Co), Cobalt-nitride, Cobalt-oxide (Co—O), Cobalt-palladium (Co—Pd), Cobalt-platinum (Co—Pt), Iron (Fe), Iron-Gold (Fe—Au), Iron-Chromium (Fe—Cr), Iron-Nitride (Fe—N), Iron-oxide (Fe 3 O 4 ), Iron-palladium (Fe—Pd), Fe—Zr—Nb—B, Mn-nitride (Mn—N), Nb—Fe—B, Nd—Fe—B—Nb—Cu, and Nickel (Ni).

15. The magnetic disk of claim 12 , wherein said plurality of low coercivity magnetic nanoparticles are selected from the group consisting of Mn—Zn, single crystal Mn—Zn, and Ni—Zn.

16. The magnetic disk of claim 11 , wherein said layer comprises a mono-layer of said carbon nanotubes.

17. The magnetic disk of claim 11 , wherein said carbon nanotubes are arranged into a data track.

18. The magnetic disk of claim 11 , wherein said matrix is comprised of High Density Poly Ethylene.

19. The magnetic disk of claim 11 , further comprising a flexible substrate.

20. A magnetic disk, comprising:

a plurality of magnetic nanoparticles contained within a carbon nanotube; and

a plurality of said carbon nanotubes encapsulated in a matrix.

Assignments (2)
MERGER Recorded Oct 21, 2015
From: SIGMA PRO LTD. LLC
To: GULA CONSULTING LIMITED LIABILITY COMPANY
Reel/Frame 036850/0120 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 9, 2011
From: WINARSKI, TYSON Y.
To: SIGMA PRO LTD. LLC
Reel/Frame 027202/0612 →
Continuity (2)
Division 11278879 · Apr 6, 2006
Related Publication 20100291412A1 · Nov 18, 2010