IP Library Granted Patent US 10,500,546
Granted Patent B2
US 10,500,546 · App. 14/609,325 · Granted Dec 10, 2019

Processes for forming composite structures with a two-dimensional material using a porous, non-sacrificial supporting layer

Inventors: Steven Lloyd Sinsabaugh (Abingdon, MD); Peter V. Bedworth (Los Gatos, CA); David Francis Casey, Jr. (Voorhees, NJ); Scott E. Heise (San Jose, CA); Steven W. Sinton (Palo Alto, CA); Randall Mark Stoltenberg (Palo Alto, CA); Jacob Louis Swett (Mountain View, CA)
Assignee: Lockheed Martin Corporation
B01D67/0069B01D67/0053B01D67/0058B01D69/10B01D71/021B01D67/002B01D67/003B01D67/0004B01D67/0034B01D67/0037B01D67/0062B01D67/0072B01D69/02B01D2323/39B01D2325/24
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Quick Facts
Patent No.
US 10,500,546
App. No.
14/609,325
Granted
Dec 10, 2019
Kind
B2
Abstract

It can be difficult to remove atomically thin films, such as graphene, graphene-based material and other two-dimensional materials, from a growth substrate and then to transfer the thin films to a secondary substrate. Tearing and conformality issues can arise during the removal and transfer processes. Processes for forming a composite structure by manipulating a two-dimensional material, such as graphene or graphene-base material, can include: providing a two-dimensional material adhered to a growth substrate; depositing a supporting layer on the two-dimensional material while the two-dimensional material is adhered to the growth substrate; and releasing the two-dimensional material from the growth substrate, the two-dimensional material remaining in contact with the supporting layer following release of the two-dimensional material from the growth substrate.

Claims (33)

1. A membrane comprising:

a first layer comprising 1 to 5 layers of a porous graphene or a porous graphene-based material formed by chemical vapor deposition that has been subjected to nanoparticle bombardment;

a supporting layer in contact with the first layer that comprises a plurality of filaments formed by a wet electrospinning process or a dry electrospinning process; and

a secondary substrate comprising a porous polymer,

wherein the first layer is positioned between the secondary substrate and the supporting layer or the supporting layer is positioned between the first layer and the secondary substrate.

2. A membrane comprising:

a first layer comprising 2 to 5 layers of a porous graphene or a porous graphene-based material;

a porous or permeable supporting layer different from the first layer, and

a third layer comprising a porous or permeable secondary substrate,

wherein the first layer is positioned between the secondary substrate and the supporting layer or the supporting layer is positioned between the first layer and the secondary substrate and

wherein the supporting layer comprises filaments or fibers having a diameter of less than 1 μm.

3. The membrane of claim 2 , wherein the graphene or the graphene-based material comprises 2 layers of graphene or graphene-based material.

4. The membrane of claim 2 , wherein the graphene or the graphene-based material is perforated via nanoparticle bombardment.

5. The membrane of claim 2 , wherein the graphene or the graphene-based material comprises at least 90% graphene.

6. The membrane of claim 2 , wherein the graphene or the graphene-based material is in contact with the supporting layer.

7. The membrane of claim 2 , wherein the graphene or the graphene-based material is formed by chemical vapor deposition.

8. The membrane of claim 2 , wherein the filaments are polymer filaments formed by a wet electrospinning process or a dry electrospinning process.

9. The membrane of claim 2 , wherein the first layer is positioned between the secondary substrate and the supporting layer.

10. The membrane of claim 2 , wherein the supporting layer is positioned between the first layer and the secondary substrate.

11. The membrane of claim 2 , wherein the supporting layer comprises pores.

12. The membrane of claim 11 , wherein porous supporting layer has a pore size gradient.

13. The membrane of claim 2 , wherein the graphene or the graphene-based material is perforated with pores and the supporting layer comprises pores, wherein the pores in the graphene or the graphene-based material are smaller than the pores in the supporting layer.

14. The membrane of claim 2 , wherein the supporting layer comprises a random mat of fibers, the fibers having a diameter between about 10 nm and about 500 nm.

15. The membrane of claim 2 , wherein the supporting layer the supporting has a thickness between about 500 nm and about 10 μm.

16. The membrane of claim 2 , wherein the supporting layer has a thickness of 1 mm or less.

17. The membrane of claim 2 , wherein the graphene or graphene-based film are at least 10-fold smaller than the plurality of pores in the supporting layer.

18. The membrane of claim 2 , wherein the filaments or fibers have a diameter of less than 100 nm.

19. A membrane comprising:

a first layer comprising 2 to 5 layers of a porous two-dimensional material;

a supporting layer in contact with the first layer that comprises a plurality of filaments formed by a wet electrospinning process or a dry electrospinning process; and

a secondary substrate comprising a porous polymer,

wherein the first layer is positioned between the secondary substrate and the supporting layer or the supporting layer is positioned between the first layer and the secondary substrate.

20. The membrane of claim 2 , wherein the supporting layer comprises a random layer of filaments or fibers having a diameter of less than 500 nm.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 10, 2015
From: SINSABAUGH, STEVEN LLOYD; BEDWORTH, PETER V.; CASEY, DAVID FRANCIS, JR.; HEISE, SCOTT E.; SINTON, STEVEN W.; STOLTENBERG, RANDALL MARK; SWETT, JACOB LOUIS
To: LOCKHEED MARTIN CORPORATION
Reel/Frame 035125/0432 →
Continuity (2)
Provisional Application 61934537 · Jan 31, 2014
Related Publication 20150217219A1 · Aug 6, 2015
Cited By (2)
US 12,357,950 US 12,397,268