Claims
- 1. A poly(α-olefin) copolymer obtained from the polymerization of at least one α-olefin having from 2 to about 20 carbon atoms and at least one bulky olefin, the process comprising polymerizing the monomers in the presence of hydrogen and a catalytically effective amount of a catalyst comprising the product obtained by combining a metallocene procatalyst with a cocatalyst, the metallocene procatalyst being at least one compound of general formula:
- 2. The poly(α-olefin) of claim 1 wherein in the metallocene procatalyst, bridging group R3 possesses the structure
- 3. The poly(α-olefin) of claim 2 wherein in the metallocene procatalyst, the cyclic group is a cycloalkyl, heterocycloalkyl, cycloalkenyl, heterocycloalkenyl, aryl, heteroaryl, alkaryl, alkylheteroaryl, aralkyl or heteroaralkyl group.
- 4. The poly(α-olefin) of claim 3 wherein in the metallocene procatalyst, ligand (Cp1Rm1) is unsubstituted cyclopentadienyl, ligand (Cp2Rp2) is substituted or unsubstituted indenyl or fluorenyl, M1 is zirconium, R4 and R5 each is phenyl and each ligand X is chlorine.
- 5. The poly(α-olefin) of claim 1 wherein the metallocene procatalyst is combined with hydrogen and the cocatalyst in any order thereof in the presence or absence of monomer.
- 6. The poly(α-olefin) of claim 2 wherein the metallocene procatalyst is combined with hydrogen and the cocatalyst in any order thereof in the presence or absence of monomer.
- 7. The poly(α-olefin) of claim 3 wherein the metallocene procatalyst is combined with hydrogen and the cocatalyst in any order thereof in the presence or absence of monomer.
- 8. The poly(α-olefin) of claim 4 wherein the metallocene procatalyst is combined with hydrogen and the cocatalyst in any order thereof in the presence or absence of monomer.
- 9. The poly(α-olefin) of claim 1 wherein the bulky olefin is selected from the group consisting of cyclic and polycyclic olefins of the structural formulae:
- 10. The poly(α-olefin) of claim 1 wherein the α-olefin is 1-decene and the bulky olefin is norbornene.
- 11. The poly(α-olefin) of claim 1 wherein polymerization is carried out under solution polymerization conditions.
- 12. The poly(α-olefin) of claim 1 wherein polymerization is carried out under slurry polymerization conditions.
- 13. The poly(α-olefin) of claim 1 possessing a Mw of from about 500 to about 80,000, a Mw/Mn of from about 1.0 to about 10, a Kv100 of from about 10 to about 10,000, an Iodine Number of from about 0.0 to about 10 and a Tg of below about −20° C. and wherein the poly(α-olefin) is substantially amorphous.
- 14. The poly(α-olefin) of claim 13 possessing a Mw of from about 750 to about 60,000, a Mw/Mn of from about 1.5 to about 5, a Kv100 of from about 20 to about 7,500, an Iodine Number of from about 0.1 to about 5 and a Tg of below about −30° C. and wherein the polyalphaolefin is substantially amorphous.
- 15. The poly(α-olefin) of claim 14 possessing a Mw of from about 1,000 to about 40,000, a Mw/Mn of from about 1.75 to about 4, a Kv100 of from about 25 to about 5,000, an Iodine Number of from about 0.2 to about 3 and a Tg of below about −40° C. and wherein the poly(α-olefin) is substantially amorphous.
- 16. A lubricant composition comprising a lubricant and a viscosity-modifyng amount of a poly(α-olefin) copolymer obtained from the polymerization of at least one α-olefin having from 2 to about 20 carbon atoms and at least one bulky olefin, the process comprising polymerizing the monomers in the presence of hydrogen and a catalytically effective amount of a catalyst comprising the product obtained by combining a metallocene procatalyst with a cocatalyst, the metallocene procatalyst being at least one compound of general formula:
- 17. The lubricant composition of claim 16 wherein in the metallocene pro catalyst, ligand (Cp1Rm1) is unsubstituted cyclopentadienyl, ligand (Cp2Rp2) is substituted or unsubstituted indenyl or fluorenyl, M1 is zirconium, R4 and R5 each is phenyl and each ligand X is chlorine.
- 18. The lubricant composition of claim 16 wherein the bulky olefin is selected from the group consisting of cyclic and polycyclic olefins of the structural formulae:
- 19. The lubricant composition of claim 16 wherein the α-olefin is 1-decene and the bulky olefin is norbornene.
- 20. The lubricant composition of claim 16 wherein polymerization is carried out under slurry polymerization conditions.
- 21. The lubricant composition of claim 16 wherein the poly(α-olefin) possesses a Mw of from about 500 to about 80,000, a Mw/Mn of from about 1.0 to about 10, a Kv100 of from about 10 to about 10,000, an Iodine Number of from about 0.0 to about 10 and a Tg of below about −20° C. and wherein the poly(α-olefin) is substantially amorphous.
- 22. The lubricant composition of claim 16 wherein the poly(α-olefin) possesses a Mw of from about 750 to about 60,000, a Mw/Mn of from about 1.5 to about 5, a Kv100 of from about 20 to about 7,500, an Iodine Number of from about 0.1 to about 5 and a Tg of below about −30° C. and wherein the poly(α-olefin) is substantially amorphous.
- 23. A miethod for improving the viscosity index of a lubricant composition comprising adding to the composition a viscosity-modifying amount of a poly(α-olefin) copolymer obtained from the polymerization of at least one α-olefin having from 2 to about 20 carbon atoms and at least one bulky olefin, the process comprising polymerizing the monomers in the presence of hydrogen and a catalytically effective amount of a catalyst comprising the product obtained by combining a metallocene procatalyst with a cocatalyst, the metallocene procatalyst being at least one compound of general formula:
- 24. The method of claim 23 wherein in the metallocene procatalyst, ligand (Cp1Rm1) is unsubstituted cyclopentadienyl, ligand (Cp2Rp2) is substituted or unsubstituted indenyl or fluorenyl, M1 is zirconium, R4 and R5 each is phenyl and each ligand X is chlorine.
- 25. The method of claim 23 wherein the bulky olefin is selected from the group consisti1ng of cyclic and polycyclic olefins of the structural formulae:
- 26. The method of claim 23 wherein the α-olefin is 1-decene and the bulky olefin is norbornene.
- 27. The method of claim 23 wherein polymerization is carried out under slurry polymerization conditions.
- 28. The method of claim 23 wherein the poly(α-olefin) possesses a Mw of from about 500 to about 80,000, a Mw/Mn of from about 1.0 to about 10, a Kv100 of from about 10 to about 10,000, an Iodine Number of from about 0.0 to about 10 and a Tg of below about −20° C. and wherein the poly(α-olefin) is substantially amorphous.
- 29. The method of claim 23 wherein the poly(α-olefin) possesses a Mw of from about 750 to about 60,000, a Mw/Mn of from about 1.5 to about 5, a Kv100 of from about 20 to about 7,500, an Iodine Number of from about 0.1 to about 5 and a Tg of below about −30° C. and wherein the polyalphaolefin is substantially amorphous.
Parent Case Info
[0001] This application is a division of U.S. patent application Ser. No. 10/014,911, filed on Dec. 14, 2001.
Divisions (1)
|
Number |
Date |
Country |
Parent |
10014911 |
Dec 2001 |
US |
Child |
10771780 |
Feb 2004 |
US |