IP Library › Granted Patent US 10,449,473
Granted Patent B2
US 10,449,473 · App. 15/037,645 · Granted Oct 22, 2019

Ultra fast oleophobic-hydrophilic switching surfaces

Inventors: Jas Pal Singh Badyal (Wolsingham, GB); Olivia Diane Louise Amy Atkinson (Hale, GB); Philip Simon Brown (Harrogate, GB)
Assignee: The University of Durham
B01D37/02B01D17/02C09D5/16C09D123/0869C09D125/08C09D135/00C09D135/06
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Quick Facts
Patent No.
US 10,449,473
App. No.
15/037,645
Granted
Oct 22, 2019
Kind
B2
Abstract

The invention provides a coating which exhibits fast oleophobic-hydrophilic switching behaviour with, for example, equilibration of high oil contact angle (hexadecane=80°) and low water contact angle (<10°) values which occur within 10 s of droplet impact. These optically transparent surfaces display excellent anti-fogging and self-cleaning properties. The magnitude of oleophobic-hydrophilic switching can be further enhanced by the incorporation of surface roughness and in one embodiment the coating is applied to a surface in the form of a mesh in order to form an effective filter.

Claims (19)

1. A coating which is oleophobic and hydrophilic with a switching parameter magnitude of at least 60° and a switching speed of less than 10 seconds.

2. A coating according to claim 1 wherein the coating has a switching parameter magnitude of at least 90°.

3. A coating according to claim 1 wherein the coating has a switching speed of less than 1 second.

4. A coating according to claim 1 wherein the coating comprises a co-polymer-fluorosurfactant complex.

5. A coating according to claim 4 wherein the coating forms a fast switching oleophobic-hydrophile polyelectrolyte fluorosurfactant surface.

6. A coating according to claim 4 wherein the co-polymer-fluorosurfactant complex is dipped or spin coated.

7. A coating according to claim 6 wherein the co-polymer-fluorosurfactant complex is by dipped or spin coated from a dimethylformamide (DMF) solvent.

8. A coating according to claim 7 wherein the coating has a surface with an AFM RMS roughness in the range of 1-5 nm.

9. A coating according to claim 8 wherein the surface is prepared for use as a coating with at least one anti-fogging application and self-cleaning applications.

10. A coating according to claim 1 wherein the coating includes a mixed solvent which is used to create a roughened surface effect on the coating.

11. A coating according to claim 10 wherein the said co-polymer-fluorosurfactant complex is applied by spin coating a dimethylformamide methanol solvent mixture.

12. A coating according to claim 11 wherein the roughness of the surface of the coating is increased by allowing the evaporation of at least one components of a mixed solvent mixture that is used to form the coating, as the coating dries.

13. A coating according to claim 1 , wherein the coating further comprises an article which acts as a base.

14. A coating according to claim 13 wherein the base is a mesh, the mesh is configured to treat a material including a first component and a second different component, and at least one component of the material remains on the coating surface to be subsequently removed therefrom and the second different component of the material passes over the coating and hence through the mesh.

15. A coating according to claim 14 further comprising another layer of material, wherein the material which passes through the mesh is collected as a fluid or absorbed into the another layer of material.

16. A coating according to claim 13 , wherein the base is a filter further comprising the mesh being part of a filtration system.

17. A coating according to claim 16 wherein the filtration system has a number of filters, at least one of which includes a mesh to which the coating is applied.

18. A coating according to claim 5 , wherein the oleophobic-hydrophilic polyelectrolyte-fluorosurfactant surfaces is created by utilising a maleic anhydride co-polymer.

19. A coating according to claim 1 , wherein the coating is a polymer-surfactant complex.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 20, 2016
From: BADYAL, JAS PAL SINGH; ATKINSON, OLIVIA DIANE LOUISE AMY; BROWN, PHILIP SIMON
To: THE UNIVERSITY OF DURHAM
Reel/Frame 038655/0273 →
Priority Claims (1)
GB 1320676.8 · Nov 22, 2013 · national
Continuity (1)
Related Publication 20160296866A1 · Oct 13, 2016