IP Library Granted Patent US 9,884,937
Granted Patent B2
US 9,884,937 · App. 15/206,402 · Granted Feb 6, 2018

Polymer compositions and methods

Inventors: Scott D. Allen (Ithaca, NY); Wayne R. Willkomm (Ithaca, NY)
Assignee: Saudi Aramco Technologies Company
C08G18/14C08G18/165C08G18/1833C08G18/2081C08G18/246C08G18/44C08G18/7664C08G18/7671C08G64/0208C08G64/183C08G64/34C08G2101/0008C08G2101/0025C08G2101/0066C08G2101/0083
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Quick Facts
Patent No.
US 9,884,937
App. No.
15/206,402
Granted
Feb 6, 2018
Kind
B2
Abstract

The present invention encompasses polyurethane compositions comprising aliphatic polycarbonate chains. In one aspect, the present invention encompasses polyurethane foams, thermoplastics and elastomers derived from aliphatic polycarbonate polyols and polyisocyanates wherein the polyol chains contain a primary repeating unit having a structure: In another aspect, the invention provides articles comprising the inventive foam and elastomer compositions as well as methods of making such compositions.

Claims (25)

1. An aliphatic polycarbonate polyol composition comprising an aliphatic polycarbonate polyol having the structure:

where R q is at each occurrence in the polymer chain independently —H or —CH 3 ;

each q is independently an integer from about 2 to about 40;

n is at each occurrence, independently an integer from about 3 to about 1,000;

c is at each occurrence in the polymer chain independently an integer from 0 to 6; and

d is at each occurrence in the polymer chain independently an integer from 1 to 11.

2. The aliphatic polycarbonate polyol composition of claim 1 , wherein the aliphatic polycarbonate polyol is characterized in that at least 90% of the end groups are —OH groups.

3. The B aliphatic polycarbonate polyol composition of claim 2 , wherein the aliphatic polycarbonate polyol is characterized in that at least 95% of the end groups are —OH groups.

4. The aliphatic polycarbonate polyol composition of claim 3 , wherein the aliphatic polycarbonate polyol is characterized in that at least 98% of the end groups are —OH groups.

5. The aliphatic polycarbonate polyol composition of claim 4 , wherein the aliphatic polycarbonate polyol is characterized in that at least 99% of the end groups are —OH groups.

6. The aliphatic polycarbonate polyol composition of claim 1 , wherein the aliphatic polycarbonate polyol has a number average molecular weight (M a ) in the range of about 500 g/mol to about 10,000 g/mol.

7. The aliphatic polycarbonate polyol composition of claim 6 , wherein the aliphatic polycarbonate polyol has a number average molecular weight (M a ) between about 500 g/mol and about 5,000 g/mol.

8. The aliphatic polycarbonate polyol composition of claim 7 , wherein the aliphatic polycarbonate polyol has a number average molecular weight (M a ) between about 500 g/mol and about 2,500 g/mol.

9. The aliphatic polycarbonate polyol composition of claim 1 , wherein the aliphatic polycarbonate polyol is characterized in that it has a PDI less than 2.

10. The aliphatic polycarbonate polyol composition of claim 9 , wherein the aliphatic polycarbonate polyol is characterized in that it has a PDI less than about 1.5.

11. The aliphatic polycarbonate polyol composition of claim 1 , wherein the aliphatic polycarbonate polyol is characterized in that, on average in the composition, for linkages formed during epoxide CO 2 copolymerization, the percentage of carbonate linkages is 85% or greater.

12. The aliphatic polycarbonate polyol composition of claim 11 , wherein the aliphatic polycarbonate polyol is characterized in that, on average in the composition, for linkages formed during epoxide CO 2 copolymerization, the percentage of carbonate linkages is 90% or greater.

13. The aliphatic polycarbonate polyol composition of claim 12 , wherein the aliphatic polycarbonate polyol is characterized in that, on average in the composition, for linkages formed during epoxide CO 2 copolymerization, the percentage of carbonate linkages is 95% or greater.

14. The aliphatic polycarbonate polyol composition of claim 13 , wherein the aliphatic polycarbonate polyol is characterized in that, on average in the composition, for linkages formed during epoxide CO 2 copolymerization, the percentage of carbonate linkages is 98% or greater.

15. The aliphatic polycarbonate polyol composition of claim 14 , wherein the aliphatic polycarbonate polyol is characterized in that, on average in the composition, for linkages formed during epoxide CO 2 copolymerization, the percentage of carbonate linkages is 99% or greater.

16. The aliphatic polycarbonate polyol composition of claim 1 , wherein the aliphatic polycarbonate polyol is selected from:

17. The aliphatic polycarbonate polyol composition of claim 16 , wherein the aliphatic polycarbonate polyol is characterized in that at least 98% of the end groups are —OH groups.

18. The aliphatic polycarbonate polyol composition of claim 16 , wherein the aliphatic polycarbonate polyol is characterized in that, on average in the composition, for linkages formed during epoxide CO 2 copolymerization, the percentage of carbonate linkages is 98% or greater.

19. A B-side mixture for the formation of polyurethane compositions, the mixture comprising an aliphatic polycarbonate polyol composition of claim 1 .

20. A polyurethane composition derived from a B-side mixture of claim 19 by reaction with one or more isocyanate compounds.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 14, 2017
From: NOVOMER, INC.
To: SAUDI ARAMCO TECHNOLOGIES COMPANY
Reel/Frame 043194/0539 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 22, 2017
From: ALLEN, SCOTT D.; WILLKOMM, WAYNE R.
To: NOVOMER, INC.
Reel/Frame 042786/0939 →
Continuity (3)
Continuation 14234482
Provisional Application 61511543 · Jul 25, 2011
Related Publication 20160319064A1 · Nov 3, 2016