IP Library Granted Patent US 11,316,092
Granted Patent B2
US 11,316,092 · App. 15/167,556 · Granted Apr 26, 2022

High temperature superconducting films and methods for modifying and creating same

Inventors: Douglas J. Gilbert (Flagstaff, AZ); Timothy S. Cale (Phoenix, AZ)
Assignee: Ambature, Inc.
H01L39/128H01L39/12H01L39/24H01L39/2422Y10T29/49014Y10T428/24322Y10T428/31678
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Quick Facts
Patent No.
US 11,316,092
App. No.
15/167,556
Granted
Apr 26, 2022
Kind
B2
Abstract

Operational characteristics of an high temperature superconducting (“HTS”) film comprised of an HTS material may be improved by depositing a modifying material onto appropriate surfaces of the HTS film to create a modified HTS film. In some implementations of the invention, the HTS film may be in the form of a “c-film.” In some implementations of the invention, the HTS film may be in the form of an “a-b film,” an “a-film” or a “b-film.” The modified HTS film has improved operational characteristics over the HTS film alone or without the modifying material. Such operational characteristics may include operating in a superconducting state at increased temperatures, carrying additional electrical charge, operating with improved magnetic properties, operating with improved mechanic properties or other improved operational characteristics. In some implementations of the invention, the HTS material is a mixed-valence copper-oxide perovskite, such as, but not limited to YBCO. In some implementations of the invention, the modifying material is a conductive material that bonds easily to oxygen, such as, but not limited to, chromium.

Claims (29)

1. An HTS film comprising:

a first layer comprised of an HTS material, wherein an a-axis of the HTS material extends substantially parallel to a length of the HTS film; and

a second layer comprised of a modifying material bonded to a face of the HTS material of the first layer, wherein the face of the HTS material is substantially parallel to a b-plane of the HTS material,

wherein discrete portions of the HTS film operate in a superconducting state at higher temperatures than does the HTS material without the modifying material,

wherein the HTS material comprises YBCO.

2. The HTS film of claim 1 , further comprising a third layer comprised of a substrate material.

3. The HTS film of claim 2 , wherein the first layer is adjacent the substrate layer.

4. The HTS film of claim 2 , wherein the second layer is adjacent the substrate layer.

5. The HTS film of claim 2 , wherein the substrate material comprises a polycrystalline material, a polycrystalline metal, an alloy, a Hastelloy metal, a Haynes metal, or an Inconel metal.

6. The HTS film of claim 1 , further comprising a buffer or an insulating layer.

7. The HTS film of claim 6 , wherein the first layer is adjacent the buffer or the insulating layer.

8. The HTS film of claim 6 , wherein the second layer is adjacent the buffer or the insulating layer.

9. The HTS film of claim 1 , further comprising a third layer of HTS material bonded to the second layer.

10. The HTS film of claim 1 , further comprising a third layer of modifying material bonded to the first layer.

11. The HTS film of claim 1 , wherein the modifying material comprises a metal, or an oxide of the metal, wherein the metal is selected from the group consisting of: chromium, copper, bismuth, cobalt, vanadium, titanium, rhodium, beryllium, gallium, and selenium.

12. The HTS film of claim 1 , wherein the HTS material forms an aperture along an a-axis of the HTS material.

13. An HTS film comprising:

a substrate;

a first layer adjacent to the substrate and comprised of an HTS material, wherein an a-axis of the HTS material extends substantially parallel to a length of the HTS film; and

a second layer comprised of a modifying material bonded to a face of the HTS material of the first layer, wherein the face of the HTS material is substantially parallel to a b-plane of the HTS material,

wherein discrete portions of the HTS film operate in an HTS state at higher temperatures than does the HTS material without the modifying material,

wherein the HTS material comprises YBCO.

14. The HTS film of claim 13 , wherein the modifying material comprises a metal, or an oxide of the metal, wherein the metal is selected from the group consisting of: chromium, copper, bismuth, cobalt, vanadium, titanium, rhodium, beryllium, gallium, and selenium.

15. The HTS film of claim 13 , wherein the HTS material forms an aperture along an a-axis of the HTS material.

16. An HTS film comprising:

a first layer comprised of a YBCO, wherein an a-axis of the YBCO extends substantially parallel to a length of the HTS film; and

a second layer comprised of a modifying material bonded to a face of the YBCO of the first layer, wherein the face of the YBCO is substantially parallel to a b-plane of the YBCO,

wherein discrete portions of the HTS film operate in a superconducting state at higher temperatures than does the YBCO without the modifying material.

17. The HTS film of claim 16 , wherein the modifying material comprises a metal, or an oxide of the metal, wherein the metal is selected from the group consisting of: chromium, copper, bismuth, cobalt, vanadium, titanium, rhodium, beryllium, gallium, and selenium.

Assignments (3)
SECURITY INTEREST Recorded Dec 9, 2019
From: AMBATURE, INC.
To: AHRE INVESTMENTS, LLC ET AL.
Reel/Frame 051227/0041 →
SECURITY INTEREST Recorded Jul 20, 2019
From: AMBATURE, INC.
To: AHRE INVESTMENTS, LLC ET AL.
Reel/Frame 049810/0450 →
SECURITY INTEREST Recorded Sep 10, 2018
From: AMBATURE, INC.
To: LANGER ENERGY INVESTMENTS LLC ET AL.
Reel/Frame 047480/0733 →
Continuity (6)
Continuation 14169351 · Jan 31, 2014
Continuation 12896876 · Oct 2, 2010
Continuation 15167556
Continuation In Part 12896874 · Oct 2, 2010
Provisional Application 61248134 · Oct 2, 2009
Related Publication 20160351780A1 · Dec 1, 2016