IP Library Granted Patent US 11,224,130
Granted Patent B2
US 11,224,130 · App. 16/283,808 · Granted Jan 11, 2022

Composite transparent conductors and methods of forming the same

Inventors: David Jones (Mountain View, CA); Florian Pschenitzka (San Francisco, CA); Xina Quan (Saratoga, CA); Michael A. Spaid (Mountain View, CA); Jeffrey Wolk (Half Moon Bay, CA)
Assignee: Cambrios Film Solutions Corporation
H05K3/245B82Y10/00B82Y30/00H01L29/413H01L31/1884H05K3/249G02F1/13439H01L29/0669H01L51/0048H01L51/5206H05K1/097H05K2201/0108H05K2201/026Y02E10/50
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Quick Facts
Patent No.
US 11,224,130
App. No.
16/283,808
Granted
Jan 11, 2022
Kind
B2
Abstract

Composite transparent conductors are described, which comprise a primary conductive medium based on metal nanowires and a secondary conductive medium based on a continuous conductive film.

Claims (45)

1. A composite transparent conductor comprising:

a first layer of a primary conductive medium comprising a first type of electrically conductive nanostructures, wherein:

a plurality of the first type of electrically conductive nanostructures are below an electrical percolation threshold, and

the primary conductive medium has a first mesh size; and

a second layer of a secondary conductive medium contacting the first layer of the primary conductive medium, wherein:

the secondary conductive medium is vertically conductive so as to equalize an electrical potential distribution in the composite transparent conductor, and

the secondary conductive medium has a second mesh size at least five times smaller than the first mesh size.

2. The composite transparent conductor of claim 1 , wherein:

the secondary conductive medium comprises a plurality of a second type of electrically conductive nanostructures,

the first type of electrically conductive nanostructures has a first material composition, and

the second type of electrically conductive nanostructures has a second material composition different than the first type of electrically conductive nanostructures.

3. The composite transparent conductor of claim 1 , wherein:

the secondary conductive medium comprises a plurality of a second type of electrically conductive nanostructures,

the first type of electrically conductive nanostructures has a first aspect ratio,

the second type of electrically conductive nanostructures has a second aspect ratio, and

the first aspect ratio is less than the second aspect ratio.

4. The composite transparent conductor of claim 3 , wherein one of the plurality of the second type of electrically conductive nanostructures connects at least two of the plurality of the first type of electrically conductive nanostructures.

5. The composite transparent conductor of claim 3 , wherein one of the plurality of the second type of electrically conductive nanostructures connects with at least another one of the plurality of the second type of electrically conductive nanostructures.

6. The composite transparent conductor of claim 3 , wherein the plurality of the second type of electrically conductive nanostructures comprises a plurality of anisotropic nanostructures.

7. The composite transparent conductor of claim 1 , wherein:

the secondary conductive medium comprises a plurality of a second type of electrically conductive nanostructures,

the first type of electrically conductive nanostructures has a first geometry,

the second type of electrically conductive nanostructures has a second geometry different than the first geometry.

8. The composite transparent conductor of claim 1 , further comprising a substrate layer, wherein:

the first layer of the primary conductive medium is positioned on top of the second layer of the secondary conductive medium, and

the second layer of the secondary conductive medium is positioned on top of the substrate layer.

9. The composite transparent conductor of claim 1 , wherein the primary conductive medium and the secondary conductive medium are integrated.

10. The composite transparent conductor of claim 1 , wherein the primary conductive medium and the secondary conductive medium are electrically coupled.

11. The composite transparent conductor of claim 1 , wherein:

the secondary conductive medium comprises a plurality of a second type of electrically conductive nanostructures, and

the plurality of the second type of electrically conductive nanostructures form a conductive network.

12. The composite transparent conductor of claim 11 , further comprising a third type of electrically conductive nanostructures.

13. The composite transparent conductor of claim 12 , wherein the third type of electrically conductive nanostructures are metal nanoparticles, metal oxide nanoparticles, metal nanowires, carbon black or a combination thereof.

14. A composite transparent conductor comprising:

a first layer of a primary conductive medium comprising a first type of electrically conductive nanostructures, wherein a plurality of the first type of electrically conductive nanostructures are below an electrical percolation threshold; and

a second layer of a secondary conductive medium contacting the first layer of the primary conductive medium, wherein:

the secondary conductive medium comprises a second type of electrically conductive nanostructures,

the secondary conductive medium is vertically conductive so as to equalize an electrical potential distribution in the composite transparent conductor, and

a specific weight of the second type of electrically conductive nanostructures is less than a specific weight of the first type of electrically conductive nanostructures.

15. The composite transparent conductor of claim 14 , wherein:

the first type of electrically conductive nanostructures has a first material composition, and

the second type of electrically conductive nanostructures has a second material composition different than the first type of electrically conductive nanostructures.

16. The composite transparent conductor of claim 14 , wherein:

the primary conductive medium has a first mesh size, and

the secondary conductive medium has a second mesh size at least five times smaller than the first mesh size.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 4, 2025
From: CAMBRIOS FILM SOLUTIONS CORPORATION
To: PINE CASTLE INVESTMENTS LIMITED
Reel/Frame 070110/0392 →
Continuity (4)
Division 13206279 · Aug 9, 2011
Continuation 12106193 · Apr 18, 2008
Provisional Application 60913231 · Apr 20, 2007
Related Publication 20190191569A1 · Jun 20, 2019