IP Library Granted Patent US 11,174,413
Granted Patent B2
US 11,174,413 · App. 16/437,469 · Granted Nov 16, 2021

Optical fiber coating compositions with hydrogen bonding, non-covalent bonding, cross-linkers

Inventor: James Robert Matthews (Painted Post, NY)
Assignee: Corning Incorporated
C09D133/14G02B1/14G02B6/10
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Quick Facts
Patent No.
US 11,174,413
App. No.
16/437,469
Granted
Nov 16, 2021
Kind
B2
Abstract

An optical fiber coating composition comprising: one or more monomers forming a first polymer chain and a second polymer chain upon polymerization; and one or more hydrogen bonding cross-linkers including a first molecule that covalently bonds to the first polymer chain during the polymerization and a second molecule that covalently bonds to the second polymer chain during the polymerization. The first molecule includes a first functional group. The second molecule includes a second functional group. The first functional group and the second functional group hydrogen bond to form three or more hydrogen bonds during the polymerization. The first functional group and the second functional group both can be a ureidopyrimidinone functional group. The first molecule and the second molecule can both be a ureidopyrimidinone (meth)acrylate. The one or more monomers can be mono-acrylate monomers, and the optical fiber coating composition can lack any multi-acrylate monomers.

Claims (35)

1. An optical fiber coating composition comprising:

one or more monomers, the one or more monomers forming a first polymer chain and a second polymer chain upon polymerization; and

one or more hydrogen bonding cross-linkers including a first molecule that covalently bonds to the first polymer chain during the polymerization and a second molecule that covalently bonds to the second polymer chain during the polymerization;

wherein, the first molecule includes a first functional group and the second molecule includes a second functional group, the first functional group and the second functional group hydrogen bonding to form three or more hydrogen bonds during the polymerization, and

wherein, the first functional group and the second functional group are each a ureidopyrimidinone functional group, and the first molecule and the second molecule each have the general formula:

wherein, R1 is not hydrogen, and R1 of the first molecule and R1 of the second molecule are the same or different, and

wherein, one or both of the first molecule and the second molecule have the general formula:

wherein, n is an integer.

2. The optical fiber coating composition of claim 1 , wherein, R1 comprises an acrylate group or a methacrylate group.

3. The optical fiber coating composition of claim 1 , wherein, the first molecule has the general formula:

wherein, n is an integer, and the second molecule has the general formula:

wherein, X is not hydrogen, and Y is hydrogen or a methyl group, and Z is oxygen or CH 2 .

4. The optical fiber coating composition of claim 1 ,

wherein, the first functional group and the second functional group are different.

5. The optical fiber coating composition of claim 1 , wherein, the first molecule has the general formula:

wherein, n is an integer, and the second molecule has the general formula:

wherein, X 1 is not hydrogen, Y 1 is hydrogen or a methyl group, and n is an integer.

6. The optical fiber coating composition of claim 1 , wherein, the first molecule has the general formula:

wherein, n is an integer, and the second molecule has the general formula:

wherein, n is an integer.

7. The optical fiber coating composition of claim 1 , wherein the one or more monomers includes a radiation-curable monomer.

8. The optical fiber coating composition of claim 7 , wherein the radiation-curable monomer is a (meth)acrylate monomer.

9. The optical fiber coating composition of claim 1 , wherein the first functional group comprises two hydrogen donor groups and the second functional group comprises a hydrogen acceptor group.

10. The optical fiber coating composition of claim 9 , wherein the first functional group comprises a hydrogen acceptor group and the second functional group comprises a hydrogen donor group.

11. The optical fiber coating composition of claim 1 , wherein the first functional group and the second functional group hydrogen bond to form four or more hydrogen bonds during the polymerization.

12. The optical fiber coating composition of claim 1 , wherein the first molecule comprises a (meth)acrylate group.

13. The cured product of the optical fiber coating composition of claim 1 .

14. An optical fiber coating composition comprising:

one or more monomers, the one or more monomers forming a first polymer chain and a second polymer chain upon polymerization; and

one or more hydrogen bonding cross-linkers including a first molecule that covalently bonds to the first polymer chain during the polymerization and a second molecule that covalently bonds to the second polymer chain during the polymerization;

wherein, the first molecule includes a first functional group and the second molecule includes a second functional group, the first functional group and the second functional group hydrogen bonding to form three or more hydrogen bonds during the polymerization, and

wherein, the first functional group and the second functional group are each a ureidopyrimidinone functional group, and the first molecule and the second molecule each have the general formula:

wherein, R1 is not hydrogen, and R1 of the first molecule and R1 of the second molecule are the same or different, and

wherein, one or both of the first molecule and the second molecule have the general formula:

wherein, n is an integer.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 11, 2019
From: MATTHEWS, JAMES ROBERT
To: CORNING INCORPORATED
Reel/Frame 049432/0730 →
Continuity (2)
Provisional Application 62697507 · Jul 13, 2018
Related Publication 20200017706A1 · Jan 16, 2020