IP Library Granted Patent US 9,982,169
Granted Patent B2
US 9,982,169 · App. 14/360,986 · Granted May 29, 2018

Method and apparatus for adhesive bonding in an aqueous medium

Inventors: Boxin Zhao (Waterloo, CA); Fut (Kuo) Yang (Markham, CA)
C09J9/00B29C65/4855C09J11/02C09J105/04C08K3/20C08K3/30C08K5/0091C08K5/13C08K5/17C08K2003/2265C08L5/04C08L25/18
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Quick Facts
Patent No.
US 9,982,169
App. No.
14/360,986
Granted
May 29, 2018
Kind
B2
Abstract

The disclosure is directed to an adhesive material which can be applied underwater comprising hydrophilic adhesive molecules. In other embodiments, the adhesive material may also include hydrophilic polymers and/or an oxidizing agent.

Claims (25)

1. A wet/underwater adhesive material comprising:

hydrophilic adhesive molecules including self-polymerizing catechol molecules that generate an adhesive surface independent of a hydrophilic polymer.

2. The wet/underwater adhesive material of claim 1 further comprising at least one hydrophilic polymer.

3. The wet/underwater adhesive material of claim 1 further comprising an oxidizing agent.

4. The wet/underwater adhesive material of claim 3 wherein the hydrophilic adhesive molecules and the oxidizing agent are combined to form one component of the wet/underwater adhesive material.

5. The wet/underwater adhesive material of claim 1 wherein the hydrophilic adhesive molecules including self-polymerizing catechol molecules are synthesized from simpler molecules containing catechol functional groups.

6. The wet/underwater adhesive material of claim 1 wherein the hydrophilic adhesive molecules are a mixture of different molecules containing catechol functional groups.

7. The wet/underwater adhesive material of claim 1 wherein the hydrophilic adhesive molecules are at least one of dopamine, 3,4-Dihydroxy-D-phenylalanine, 3,4-Dihydroxy-L-phenylalanine, norepinephrine, 3,4-Dihydroxyphenylacetic acid, and 3,4-Dihydroxybenzylamine.

8. The wet/underwater adhesive material of claim 2 , wherein the hydrophilic polymers have a molecular weight between about 200 Da to about 2,000 kDa.

9. The wet/underwater adhesive material of claim 2 wherein at least one of the hydrophilic polymers is an anionic polymer.

10. The wet/underwater adhesive material of claim 3 wherein the oxidizing agent is mushroom tryosinase, ammonium persulfate, NalO 4 , H 2 O 2 , O 2 , or multivalent cations.

11. The wet/underwater adhesive material of claim 10 wherein the oxidizing agent is Fe 3+ .

12. A method for forming adhering two surfaces underwater comprising:

in an underwater setting, applying hydrophilic adhesive molecules including self-polymerizing catechol molecules generating an adhesive surface independent of a hydrophilic polymer, to at least one of the two surfaces.

13. The method of claim 12 further comprising:

in an underwater setting, applying hydrophilic polymers to the hydrophilic adhesive molecules.

14. The method of claim 12 comprising:

in an underwater setting, applying an oxidizing agent to the hydrophilic adhesive molecules.

15. The method of claim 14 wherein the hydrophilic adhesive molecules and the oxidizing agent are one component.

16. The method of claim 13 further comprising:

in an underwater setting, applying an oxidizing agent to the hydrophilic adhesive molecules or the hydrophilic polymers.

17. The method of claim 16 wherein the hydrophilic adhesive molecules, the hydrophilic polymers and the oxidizing agent are mixed prior to application.

18. The method of claim 16 wherein the hydrophilic adhesive molecules and oxidizing agent wets the joint for bonding and the hydrophilic polymers is added to the joint.

19. The wet/adhesive material of claim 2 wherein the hydrophilic adhesive molecules are at least 5% of monomers in a backbone of the hydrophilic polymers.

20. The wet/underwater adhesive material of claim 9 wherein the anionic polymer is alginate.

Continuity (2)
Provisional Application 61629789 · Nov 28, 2011
Related Publication 20140311673A1 · Oct 23, 2014