Claims
- 1. A synthetic polyisoprene, said polyisoprene having a cis-1,4 linkage content which is greater than 99.0%, wherein the cis 1,4 linkage content is measured by carbon-13 nuclear magnetic resonance and/or medium-wave infrared radiation analysis.
- 2. The synthetic polyisoprene according to claim 1, having a cis 1,4 linkage content which is equal to or greater than 99.3%.
- 3. The synthetic polyisoprene according to claim 2, having a cis-1,4 linkage content which is equal to or greater than 99.5%.
- 4. The synthetic polyisoprene according to claim 3, having a cis-1,4 linkage content which is equal to 99.6%.
- 5. A process for the preparation of a synthetic polyisoprene having a cis 1,4 linkage content which is greater than 99.0%, comprising polymerizing isoprene in the presence of a catalytic system, said catalytic system being based on
a) a conjugated diene monomer, b) an organic phosphoric acid salt of a rare earth metal, c) an alkylating agent consisting of an alkyaluminum of the formula AlR3 or HAl R2, and d) a halogen donor consisting of an alkylaluminum halide, wherein said salt is suspended in at least one inert, saturated aliphatic or alicyclic hydrocarbon solvent and the alkylating agent:rare earth molar ratio ranges from 1 to 5, wherein said polymerization is carried out at a reaction temperature of less than or equal to 0° C., such that the polyisoprene obtained has a cis 1,4 linkage content of greater than 99.0%, measured by carbon-13 nuclear magnetic resonance and/or medium-wave infrared analysis.
- 6. The process of claim 5 wherein the polymerization is carried out in the presence or absence of an inert hydrocarbon polymerization solvent.
- 7. The process for the preparation of a synthetic polyisoprene according to claim 5, wherein the polymerization is carried at a temperature of −55° C. to −20° C., such that the polyisoprene obtained has a cis-1,4 linkage content which is equal to or greater than 99.3%.
- 8. The process for the preparation of a synthetic polyisoprene according to claim 5, wherein the polymerization is carried out at a temperature of −55° C to −40° C., such that the polyisoprene obtained has a cis-1,4 linkage content which is equal to or greater than 99.5%.
- 9. The process for the preparation of a synthetic polyisoprene according to claim 5, wherein the rare earth salt of the catalytic system is a rare earth tris[bis(2-ethylhexyl)phosphate].
- 10. The process for the preparation of a synthetic polyisoprene according to claim 9, wherein the rare earth salt is neodymium tris[bis(2-ethylhexyl)phosphate].
- 11. The process for the preparation of a synthetic polyisoprene according to claim 5, wherein the catalytic system comprises the rare earth metal in a concentration equal or substantially equal to 0.02 mol/l.
- 12. The process for the preparation of a synthetic polyisoprene according to claim 5, wherein the catalytic system has a halogen donor:salt molar ratio in a range from 2.6 to 3.
- 13. The process for the preparation of a synthetic polyisoprene according to claim 5, wherein the catalytic system has a conjugated diene monomer:salt molar ratio in a range from 25 to 50.
- 14. The process for the preparation of a synthetic polyisoprene according to claim 5, wherein the conjugated diene monomer of the catalytic system is butadiene.
- 15. The process for the preparation of a synthetic polyisoprene according to claim 5, wherein the alkylating agent of the catalytic system is diisobutylaluminium hydride.
- 16. The process for the preparation of a synthetic polyisoprene according to claim 5, wherein the halogen donor of the catalytic system is diethylaluminium chloride.
Priority Claims (1)
Number |
Date |
Country |
Kind |
0014677 |
Nov 2000 |
FR |
|
BACKGROUND OF THE INVENTION
[0001] The present application is a continuation of PCT/EP01/12489, filed on Oct. 29, 2001, now WO 02/38635 (published in French). The present invention relates to synthetic polyisoprenes having a high cis-1,4 linkage content and a process for their preparation.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/EP01/12489 |
Oct 2001 |
US |
Child |
10437330 |
May 2003 |
US |