IP Library Granted Patent US 10,662,211
Granted Patent B2
US 10,662,211 · App. 15/901,517 · Granted May 26, 2020

Catalysts and methods for polymer synthesis

Inventors: Scott D. Allen (Ithaca, NY); Anna E. Cherian (Ithaca, NY); Chris A. Simoneau (Oxford, CT); Jay J. Farmer (Ithaca, NY); Geoffrey W. Coates (Lansing, NY); Alexei A. Gridnev (Ithaca, NY); Robert E. LaPointe (Ithaca, NY)
Assignee: Saurdi Aramco Technologies Company
C07F15/065B01J31/182C07C251/24C07C279/12C07D213/53C07D487/04C07D487/22C07F9/5355C07F9/6561C07F19/005C08F4/80C08G64/34B01J31/0239B01J31/0259B01J31/0265B01J31/183B01J31/1835B01J31/2243B01J2531/025B01J2531/0238B01J2531/0252B01J2531/0294B01J2531/31B01J2531/62B01J2531/845C07C2601/14
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Quick Facts
Patent No.
US 10,662,211
App. No.
15/901,517
Granted
May 26, 2020
Kind
B2
Abstract

The present invention provides unimolecular metal complexes having increased activity in the copolymerization of carbon dioxide and epoxides. Also provided are methods of using such metal complexes in the synthesis of polymers. According to one aspect, the present invention provides metal complexes comprising an activating species with co-catalytic activity tethered to a multidentate ligand that is coordinated to the active metal center of the complex.

Claims (46)

1. A metal complex of the formula:

wherein

M is a metal atom;

comprises a corrole ligand; and

(Z) m represents one or more activating moieties attached to the multidentate ligand, where is a linker moiety covalently coupled to the ligand, each Z is an activating functional group; and m is an integer from 1 to 4 representing the number of Z groups present on an individual linker moiety.

2. The metal complex of claim 1 , wherein

comprises

wherein

R d at each occurrence is independently a (Z) m group, hydrogen, halogen, —OR, —NR 2 , —SR, —CN, —NO 2 , —SO 2 R, —SOR, —SO 2 NR 2 ; —CNO, —NRSO 2 R, —NCO, —N 3 , —SiR 3 ; or an optionally substituted radical selected from the group consisting of C 1-20 aliphatic; C 1-20 heteroaliphatic; phenyl; a 3- to 8-membered saturated or partially unsaturated monocyclic carbocycle; a 7-14 carbon saturated, partially unsaturated or aromatic polycyclic carbocycle; a 5- to 6-membered monocyclic heteroaryl ring having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur; a 3- to 8-membered saturated or partially unsaturated heterocyclic ring having 1-3 heteroatoms independently selected from nitrogen, oxygen, or sulfur; a 6- to 12-membered polycyclic saturated or partially unsaturated heterocycle having 1-5 heteroatoms independently selected from nitrogen, oxygen, or sulfur; and an 8- to 10-membered bicyclic heteroaryl ring having 1-5 heteroatoms independently selected from nitrogen, oxygen, or sulfur; where two or more R d groups may be taken together with intervening atoms to form one or more optionally substituted rings optionally containing one or more heteroatoms; and

R at each occurrence is independently hydrogen, an optionally substituted radical selected the group consisting of acyl; C 1-6 aliphatic; C 1-6 heteroaliphatic; carbamoyl; arylalkyl; phenyl; a 3- to 8-membered saturated or partially unsaturated monocyclic carbocycle; a 7-14 carbon saturated, partially unsaturated or aromatic polycyclic carbocycle; a 5- to 6-membered monocyclic heteroaryl ring having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur; a 3- to 8-membered saturated or partially unsaturated heterocyclic ring having 1-3 heteroatoms independently selected from nitrogen, oxygen, or sulfur; a 6- to 12-membered polycyclic saturated or partially unsaturated heterocycle having 1-5 heteroatoms independently selected from nitrogen, oxygen, or sulfur; an 8- to 10-membered bicyclic heteroaryl ring having 1-5 heteroatoms independently selected from nitrogen, oxygen, or sulfur; an oxygen protecting group; and a nitrogen protecting group, where two R groups on the same nitrogen atom can optionally be taken together to form an optionally substituted 3- to 7-membered ring.

3. The metal complex of claim 2 , wherein M is selected from the group consisting of Cr, Mn, V, Fe, Co, Mo, W, Ru, Al, and Ni.

4. The metal complex of claim 2 , wherein M is Fe.

5. The metal complex of claim 2 , wherein M is Mn.

6. The metal complex of claim 2 , wherein M is Co.

7. The metal complex of claim 2 , wherein one or more Z groups is a phosphorous-containing functional group independently selected from the group consisting of phosphines, phosphine oxides, phosphinites, phosphonites, phosphites,

wherein

each occurrence of R 1 , R 2 , and R 3 is independently hydrogen or an optionally substituted radical selected from the group consisting of C 1-20 aliphatic; C 1-20 heteroaliphatic; phenyl; a 3- to 8-membered saturated or partially unsaturated monocyclic carbocycle; a 7-14 carbon saturated, partially unsaturated or aromatic polycyclic carbocycle; a 5- to 6-membered monocyclic heteroaryl ring having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur; a 3- to 8-membered saturated or partially unsaturated heterocyclic ring having 1-3 heteroatoms independently selected from nitrogen, oxygen, or sulfur; a 6- to 12-membered polycyclic saturated or partially unsaturated heterocycle having 1-5 heteroatoms independently selected from nitrogen, oxygen, or sulfur; and an 8- to 10-membered bicyclic heteroaryl ring having 1-5 heteroatoms independently selected from nitrogen, oxygen, or sulfur; wherein any two or more R 1 , R 2 , and R 3 groups can be taken together with intervening atoms to form one or more optionally substituted rings optionally containing one or more additional heteroatoms;

each R 7′ is independently hydrogen, a hydroxyl protecting group, or an optionally substituted radical selected from the group consisting of C 1-20 acyl; C 1-20 aliphatic; C 1-20 heteroaliphatic; phenyl; a 3- to 8-membered saturated or partially unsaturated monocyclic carbocycle; a 7-14 carbon saturated, partially unsaturated or aromatic polycyclic carbocycle; a 5- to 6-membered monocyclic heteroaryl ring having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur; a 3- to 8-membered saturated or partially unsaturated heterocyclic ring having 1-3 heteroatoms independently selected from nitrogen, oxygen, or sulfur; a 6- to 12-membered polycyclic saturated or partially unsaturated heterocycle having 1-5 heteroatoms independently selected from nitrogen, oxygen, or sulfur; and an 8- to 10-membered bicyclic heteroaryl ring having 1-5 heteroatoms independently selected from nitrogen, oxygen, or sulfur; wherein two R 7′ groups can be taken together with intervening atoms to form an optionally substituted ring optionally containing one or more heteroatoms; and

X is any anion.

8. The metal complex of claim 2 , wherein one or more Z groups is a neutral nitrogen containing moiety independently selected from the group consisting of

or a combination of two or more of these,

wherein:

each occurrence of R 1 and R 2 is independently hydrogen or an optionally substituted radical selected from the group consisting of C 1-20 aliphatic; C 1-20 heteroaliphatic; phenyl; a 3- to 8-membered saturated or partially unsaturated monocyclic carbocycle; a 7-14 carbon saturated, partially unsaturated or aromatic polycyclic carbocycle; a 5- to 6-membered monocyclic heteroaryl ring having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur; a 3- to 8-membered saturated or partially unsaturated heterocyclic ring having 1-3 heteroatoms independently selected from nitrogen, oxygen, or sulfur; a 6- to 12-membered polycyclic saturated or partially unsaturated heterocycle having 1-5 heteroatoms independently selected from nitrogen, oxygen, or sulfur; and an 8- to 10-membered bicyclic heteroaryl ring having 1-5 heteroatoms independently selected from nitrogen, oxygen, or sulfur; wherein two or more R 1 and R 2 groups can be taken together with intervening atoms to form one or more optionally substituted rings optionally containing one or more additional heteroatoms;

each occurrence of R 5 is independently hydrogen or an optionally substituted radical selected from the group consisting of C 1-20 aliphatic; C 1-20 heteroaliphatic; phenyl; a 3- to 8-membered saturated or partially unsaturated monocyclic carbocycle; a 7-14 carbon saturated, partially unsaturated or aromatic polycyclic carbocycle; a 5- to 6-membered monocyclic heteroaryl ring having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur; a 3- to 8-membered saturated or partially unsaturated heterocyclic ring having 1-3 heteroatoms independently selected from nitrogen, oxygen, or sulfur; a 6- to 12-membered polycyclic saturated or partially unsaturated heterocycle having 1-5 heteroatoms independently selected from nitrogen, oxygen, or sulfur; and an 8- to 10-membered bicyclic heteroaryl ring having 1-5 heteroatoms independently selected from nitrogen, oxygen, or sulfur; wherein an R 5 group can be taken with an R 1 or R 2 group to form one or more optionally substituted rings; and

each occurrence of R 7 is independently hydrogen, a hydroxyl protecting group, or an optionally substituted radical selected from the group consisting of C 1-20 acyl; C 1-20 aliphatic; C 1-20 heteroaliphatic; phenyl; a 3- to 8-membered saturated or partially unsaturated monocyclic carbocycle; a 7-14 carbon saturated, partially unsaturated or aromatic polycyclic carbocycle; a 5- to 6-membered monocyclic heteroaryl ring having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur; a 3- to 8-membered saturated or partially unsaturated heterocyclic ring having 1-3 heteroatoms independently selected from nitrogen, oxygen, or sulfur; a 6- to 12-membered polycyclic saturated or partially unsaturated heterocycle having 1-5 heteroatoms independently selected from nitrogen, oxygen, or sulfur; and an 8- to 10-membered bicyclic heteroaryl ring having 1-5 heteroatoms independently selected from nitrogen, oxygen, or sulfur.

9. The metal complex of claim 2 , wherein one or more Z groups is a cationic moiety independently selected from the group consisting of

or a combination of two or more of these,

wherein

each occurrence of R 1 , R 2 , and R 3 is independently hydrogen or an optionally substituted radical selected from the group consisting of C 1-20 aliphatic; C 1-20 heteroaliphatic; phenyl; a 3- to 8-membered saturated or partially unsaturated monocyclic carbocycle; a 7-14 carbon saturated, partially unsaturated or aromatic polycyclic carbocycle; a 5- to 6-membered monocyclic heteroaryl ring having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur; a 3- to 8-membered saturated or partially unsaturated heterocyclic ring having 1-3 heteroatoms independently selected from nitrogen, oxygen, or sulfur; a 6- to 12-membered polycyclic saturated or partially unsaturated heterocycle having 1-5 heteroatoms independently selected from nitrogen, oxygen, or sulfur; and an 8- to 10-membered bicyclic heteroaryl ring having 1-5 heteroatoms independently selected from nitrogen, oxygen, or sulfur; wherein any two or more R 1 , R 2 , and R 3 groups can be taken together with intervening atoms to form one or more optionally substituted rings optionally containing one or more additional heteroatoms;

R 4′ is hydrogen, hydroxyl, optionally substituted C 1-20 aliphatic;

each occurrence of R 5 and R 6 is independently hydrogen or an optionally substituted radical selected from the group consisting of C 1-20 aliphatic; C 1-20 heteroaliphatic; phenyl; a 3- to 8-membered saturated or partially unsaturated monocyclic carbocycle; a 7-14 carbon saturated, partially unsaturated or aromatic polycyclic carbocycle; a 5- to 6-membered monocyclic heteroaryl ring having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur; a 3- to 8-membered saturated or partially unsaturated heterocyclic ring having 1-3 heteroatoms independently selected from nitrogen, oxygen, or sulfur; a 6- to 12-membered polycyclic saturated or partially unsaturated heterocycle having 1-5 heteroatoms independently selected from nitrogen, oxygen, or sulfur; and an 8- to 10-membered bicyclic heteroaryl ring having 1-5 heteroatoms independently selected from nitrogen, oxygen, or sulfur; wherein R 5 and R 6 can be taken together with intervening atoms to form one or more optionally substituted rings optionally containing one or more heteroatoms, and an R 5 or R 6 group can be taken with an R 1 or R 2 group to form one or more optionally substituted rings;

each occurrence of R 8 , R 9 , and R 10 is independently hydrogen or an optionally substituted radical selected from the group consisting of C 1-20 aliphatic; C 1-20 heteroaliphatic; phenyl; a 3- to 8-membered saturated or partially unsaturated monocyclic carbocycle; a 7-14 carbon saturated, partially unsaturated or aromatic polycyclic carbocycle; a 5- to 6-membered monocyclic heteroaryl ring having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur; a 3- to 8-membered saturated or partially unsaturated heterocyclic ring having 1-3 heteroatoms independently selected from nitrogen, oxygen, or sulfur; a 6- to 12-membered polycyclic saturated or partially unsaturated heterocycle having 1-5 heteroatoms independently selected from nitrogen, oxygen, or sulfur; and an 8- to 10-membered bicyclic heteroaryl ring having 1-5 heteroatoms independently selected from nitrogen, oxygen, or sulfur; wherein any two or more R 8 , R 9 and R 10 groups can be taken together with intervening atoms to form one or more optionally substituted rings;

each occurrence of R 11 is independently selected from the group consisting of: halogen, —NO 2 , —CN, —SR y , —S(O)R y , —S(O) 2 R y , —NR y C(O)R, —OC(O)R y , —CO 2 R, —NCO, —N 3 , —OR 7 , —OC(O)N(R y ) 2 , —N(R) 2 , —NR y C(O)R y , —NR y C(O)OR y ; or an optionally substituted radical selected from the group consisting of C 1-20 aliphatic; C 1-20 heteroaliphatic; phenyl; a 3- to 8-membered saturated or partially unsaturated monocyclic carbocycle; a 7-14 carbon saturated, partially unsaturated or aromatic polycyclic carbocycle; a 5- to 6-membered monocyclic heteroaryl ring having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur; a 3- to 8-membered saturated or partially unsaturated heterocyclic ring having 1-3 heteroatoms independently selected from nitrogen, oxygen, or sulfur; a 6- to 12-membered polycyclic saturated or partially unsaturated heterocycle having 1-5 heteroatoms independently selected from nitrogen, oxygen, or sulfur; and an 8- to 10-membered bicyclic heteroaryl ring having 1-5 heteroatoms independently selected from nitrogen, oxygen, or sulfur, where each occurrence of R y is independently hydrogen or an optionally substituted C 1-6 aliphatic group, and where two or more adjacent R 11 groups can be taken together to form an optionally substituted saturated, partially unsaturated, or aromatic 5- to 12-membered ring containing 0 to 4 heteroatoms;

each occurrence of R 7 is independently hydrogen, a hydroxyl protecting group, or an optionally substituted radical selected from the group consisting of C 1-20 acyl; C 1-20 aliphatic; C 1-20 heteroaliphatic; phenyl; a 3- to 8-membered saturated or partially unsaturated monocyclic carbocycle; a 7-14 carbon saturated, partially unsaturated or aromatic polycyclic carbocycle; a 5- to 6-membered monocyclic heteroaryl ring having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur; a 3- to 8-membered saturated or partially unsaturated heterocyclic ring having 1-3 heteroatoms independently selected from nitrogen, oxygen, or sulfur; a 6- to 12-membered polycyclic saturated or partially unsaturated heterocycle having 1-5 heteroatoms independently selected from nitrogen, oxygen, or sulfur; and an 8- to 10-membered bicyclic heteroaryl ring having 1-5 heteroatoms independently selected from nitrogen, oxygen, or sulfur;

X − is any anion; and

Ring A is an optionally substituted, 5- to 10-membered heteroaryl group.

10. The metal complex according to claim 2 , wherein each linker moiety “ ” is independently selected from an optionally substituted C 3 -C 30 aliphatic group.

11. The metal complex according to claim 2 , wherein each linker moiety “ ” is independently selected from an optionally substituted C 4 -C 6 aliphatic group.

12. The metal complex according to claim 2 , wherein each linker moiety “ ” is independently selected from optionally substituted C 4 aliphatic group.

13. The metal complex according to claim 2 , wherein each linker moiety “ ” is independently selected from optionally substituted C 3 aliphatic group.

14. The metal complex according to claim 2 , wherein each linker moiety “ ” is independently selected from the group consisting of:

wherein each occurrence of R y is independently —H, or an optionally substituted radical selected from the group consisting of C 1-6 aliphatic, 3- to 7-membered heterocyclic, phenyl, and 8- to 10-membered aryl.

15. The metal complex of claim 7 , wherein one or more Z group(s) is independently selected from the group consisting of:

wherein each R 1 and R 2 is methyl; or

16. The metal complex of claim 8 , wherein one or more Z group(s) is independently selected from the group consisting of:

17. The metal complex of claim 9 , wherein one or more Z group(s) is independently selected from the group consisting of:

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 22, 2018
From: ALLEN, SCOTT D.; CHERIAN, ANNA E.; SIMONEAU, CHRIS A.; FARMER, JAY J.; COATES, GEOFFREY W.; GRIDNEV, ALEXEI; LAPOINTE, ROBERT E.
To: NOVOMER, INC.
Reel/Frame 044997/0870 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 22, 2018
From: NOVOMER, INC.
To: SAUDI ARAMCO TECHNOLOGIES COMPANY
Reel/Frame 044997/0881 →
Continuity (8)
Continuation 15251668 · Aug 30, 2016
Continuation 14615902 · Feb 6, 2015
Continuation 13755112 · Jan 31, 2013
Division 13059967
Provisional Application 61098739 · Sep 19, 2008
Provisional Application 61096313 · Sep 11, 2008
Provisional Application 61091013 · Aug 22, 2008
Related Publication 20180179242A1 · Jun 28, 2018