IP Library Granted Patent US 11,029,448
Granted Patent B2
US 11,029,448 · App. 16/160,711 · Granted Jun 8, 2021

Thin films and a method for making the same

Inventors: Cory K. Perkins (Corvallis, OR); Ryan Helmut Mansergh (Corvallis, OR); Juan Carlos Ramos (Corvallis, OR); Douglas A. Keszler (Corvallis, OR)
Assignee: Oregon State University
G02B1/113B32B7/02B32B9/005B32B9/04C03C17/25C04B35/10C04B35/111C04B35/447C04B35/62218C04B35/63488C23C18/1216C03C2217/214C03C2217/23C03C2217/425C03C2217/732C03C2218/113C04B2235/3218C04B2235/75C04B2235/963
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Quick Facts
Patent No.
US 11,029,448
App. No.
16/160,711
Granted
Jun 8, 2021
Kind
B2
Abstract

Disclosed herein are embodiments of a porous aluminum oxide thin film having a surface RMS roughness value of less than 1 nm. The thin film may also comprise phosphorus. The disclosed thin films may have a refractive index of from 1 to 2, such as from 1 to 1.5. Also disclosed are embodiments of as method for making the disclosed thin films, comprising forming an aqueous solution of the alumina precursor, a surfactant and optionally a phosphorus-containing precursor, and depositing the solution on a substrate.

Claims (31)

1. A substrate with a porous aluminum oxide film disposed thereon, comprising:

the substrate; and

the porous aluminum oxide film, comprising a surface having a root mean square roughness value of from greater than zero to 1 nm and an index of refraction of from 1 to less than 1.5 at 550 nm.

2. The substrate of claim 1 , wherein the film has a reflection value of from greater than zero to 6%.

3. The substrate of claim 1 , wherein the film has a thickness of from greater than zero to 500 nm.

4. The substrate of claim 1 , wherein the film comprises pores having an average diameter of from greater than zero to 20 nm.

5. The substrate of claim 1 , wherein the film further comprises phosphorus.

6. A substrate with a porous aluminum oxide film disposed thereon, comprising:

the substrate; and

the porous aluminum oxide film, comprising a surface having a root mean square roughness value of from greater than zero to 1 nm, and wherein the film comprises a P:Al ratio of from greater than zero:1 to 3:1.

7. The substrate of claim 6 , wherein the film has a general formula Al 2 O 3-b P 2 O 5 , where b is from 0.25 to 2.

8. The substrate of claim 6 , wherein the film is a layered film.

9. The substrate of claim 8 , wherein the layered film comprises from 2 to 10 layers.

10. The substrate of claim 9 , wherein each layer independently has a refractive index of from 1 to less than 1.5.

11. The substrate of claim 9 , wherein the layered film comprises a composition gradient from a first composition having a first P:Al ratio to a second composition having a second P:Al ratio greater than the first P:Al ratio.

12. The substrate of claim 9 , wherein the layered film comprises one or more layers having a first refractive index and one or more layers having a second refractive index greater than the first refractive index.

13. The substrate of claim 12 , wherein the layered film comprises a refractive index gradient from the first refractive index to the second refractive index.

14. The substrate of claim 6 , further comprising phosphorus and having an P:Al ratio is from 0.4:1 to 1:1, wherein the root mean square roughness value is from 0.4 nm to 0.5 nm, and the film has a refractive index of from 1 to 1.35.

15. The substrate of claim 6 , wherein the film is a layered film comprising from 2 to 10 layers, each layer comprising phosphorus and having an P:Al ratio of from 0.4:1 to 1:1 and a refractive index of from 1 to 1.35, the layered film comprising:

a composition gradient from a first composition to a second composition wherein the second composition comprises a greater P:Al ratio than a P:Al ratio of the first composition; and

one or more layers having a first refractive index and one or more layers comprising a second refractive index greater than the first refractive index.

16. The substrate of claim 1 , wherein the substrate is a glass lens having the porous aluminum oxide film disposed thereon to form a coated lens.

17. A method, comprising

forming a first aqueous solution comprising a first alumina precursor and a first surfactant;

depositing the first aqueous solution on a substrate to form a first film; and

exposing the substrate to an annealing temperature to form a porous aluminum oxide thin film having a root mean square roughness value of from greater than zero to 1 nm.

18. The method of claim 17 , wherein:

the first alumina precursor is selected from aluminum nitrate, aluminum chloride, Al 13 (OH) 24 (NO 3 ) 15 , or a combination thereof;

the first surfactant is a block copolymer; or

a combination thereof.

19. The method of claim 17 , wherein the first aqueous solution further comprises a first phosphorus-containing precursor, and the method further comprises depositing a second aqueous solution comprising a second alumina precursor, a second surfactant, and a second phosphorus-containing precursor, on the first film prior to heating the substrate at the annealing temperature, to make a thin film comprising a first layer and a second layer, the second solution comprising an amount of the second phosphorus-containing precursor selected to provide a P:Al ratio for the second layer that is different from a P:Al ratio of the first layer.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 29, 2019
From: PERKINS, CORY K; MANSERGH, RYAN HELMUT; RAMOS, JUAN CARLOS; KESZLER, DOUGLAS A
To: OREGON STATE UNIVERSITY
Reel/Frame 048741/0591 →
CONFIRMATORY LICENSE Recorded Nov 2, 2018
From: OREGON STATE UNIVERSITY
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 047916/0541 →
Continuity (4)
Continuation In Part PCTUS2017028060 · Apr 18, 2017
Provisional Application 62324240 · Apr 18, 2016
Provisional Application 62448845 · Jan 20, 2017
Related Publication 20190049629A1 · Feb 14, 2019