CA2020640C

Process for the preparation of cycloolefin polymers

Abstract

Polymers of polycyclic olefins of the formulae I to IV having a viscosity number greater than 20 cm3/g and a glass transition temperature above 100.degree.C are obtained without ring opening at a high polymerization rate and at polymerization temperatures advantageous from the technical point of view by means of a catalyst which is composed of a stereo-rigid chiral metallocene compound of groups IVb to VIb of the Periodic Table of the Elements and an aluminoxane. (see formula I, II, III, IV)

CA2020640C, drawing sheet 1
Sheet 1 of 15

Term

Term ended

Expired 6 July 2010, 16.2 years ago.

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7 claims: 6 independent, 1 dependent

  1. 1
    -34 THE EMBODIMENTS OF THE INVENTION IN WHICH AN EXCLUSIVE PROPERTY OR PRIVILEGE IS CLAIMED ARE DEFINED AS FOLLOWS:1. A process for the preparation of a cycloolefin polymer by polymerizing 0.1 to 100 % by weight, relative to the total amount of monomers, of at least one polycyclic olefin of the forntulne I, II, III or IV in which R1, R2, R3, R4, R5, R6, R7 and R8 are identical or different and denote a hydrogen atom or a C1-C6-alkyl radical, it being possible for identical radicals in the various formulae to have a different meaning, 0 to 99.9 % by weight, relative to the total amount of the monomers, of a cycloolefin of the formula V -35 in which m is a number from 2 to 10, and 0 to 99.9 % by weight, relative to the total amount of the monomers, of at least one acyclic 1-olefin of the formula VI in which R9, R10, R11 and R12 are identical or different and denote a hydrogen atom or a C1-C8-alkyl radical, but when either R9 and R11 or both are an alkyl radical, R10 and R12 are hydrogen and when either R10 and R12 or both an alkyl radical, R9 and R11 are hydrogen, in solution, in suspension, in a monomer melt or in the gas phase, at a temperature of -78 to 150°C, under a pressure of 0.5 to 64 bar, and in the presence of a catalyst which comprises a metallocene as a transition metal component and an aluminoxane of the formula VII: for the linear type, and/or of the formula VIII for the cyclic type, R13 in the formulae VII and VIII denoting a C1-C6-alkyl group or phenyl or benzyl and n being an integer from 2 to 50, wherein the transition metal component of the catalyst is a compound of the formula IX -36 in which M1 is titanium, zirconium, hafnium, vanadium, niobium or tantalum, R14 and R15 are identical or different and denote a hydrogen atom, a halogen atom, a C1-C10-alkyl group, a C1 C10-alkoxy group, a C6-C10-azyl group, a C6-C10-aryloxy group, a C2-C10-alkenyl group, a C7-C40-arylalkyl group, a C7-C40-alkylaryl group or a C8-C40-arylalkenyl group, R16 and R17 are identical or different and denote a mononuclear or polynuclear hydrocarbon radical which can force a sandwich structure together with the central atom M1, R18 is =BR18, =AlR19, -Ge-, -Sn-, -O-, -S-, =SO, =SO2, =NR19, =CO, =PR19 or =P(O) R19, R19, R20 and R21 being identical or different and denoting a hydrogen atom, a.halogen atom, a C1-C10-alkyl group, a C1-C10-fluoroalkyl group, a C6-C10-fluoroaryl group, a C6-C10-aryl group, a C1-C10-alkoxy group, a C2-C10-alkenyl group, a C7-C40arylalkyl group, a C8-C40-arylalkenyl group or a C7-C40-alkylaryl group or R19 and R20 or R19 and R21, in each case with the atoms linking them, forming a -37 ring, provided that when R16 and R17 are identical and R18 is R19 and R20 are not hydrogen or C1-C10-alkyl;and M2 is silicon, germanium or tin and wherein non-reacted polycyclic olefin is recovered from the formed polymer and said non-reacted polycyclic olefin is recycled to the reaction mixture.
  2. 2
    The process as claimed in claim 1, wherein the metallocene used is rac-dimethylsilyl-bis-(1-indenyl)-zirconium dichoride, rac-dimethylgermyl-bis-(1-indenyl)-zirconium dichloride, rac-phenylmethylsilyl-bis-(1-indenyl)-zirconium dichloride, rac-phenylvinylsilyl-bis-(1-indenyl)-zirconium dichloride, 1-silacyclobutylsilyl-bis-(1'-indenyl)-hafnium dichloride, rac-diphenylsilyl-bis-(1-indenyl)-hafnium dichoride, rac-phenylmethylsilyl-bis-(1-indenyl)-hafnium dichloride, rac-dimethylsilyl-bis-(1-indenyl)-hafnium dichloride, rac-diphenylsilyl-bis-(1-indenyl)-zirconium dichloride, diphenylmethylene-(9-fluorenyl)-cyclopentadienyl-zirconium dichloride or isopropylene-(9-fluorenyl)-cyclopentadienyl-zirconium dichloride. -383.~The process as claimed in claim 1 or 2, wherein the polycyclic olefin is dimethano-octahyaronaphthalene (DMON) and the 1-olefin is ethylene.
  3. 3
    4. The process as claimed in claim 1 or 2, wherein the polycyclic olefin is DMON and the 1-olefin is propylene.
  4. 5
    6. The process as claimed in claim 1 or 2, wherein the polycyclic olefin is norbornene and the 1-olefin is propylene
  5. 6
    7. The process as claimed in any one of claims 1-6 wherein the metallocene of formula IX is preactivated by means of the aluminoxane of the formula VII and/or VIII.
  6. 7
    8. The process as claimed in claim 1, wherein R18 is selected from the group consisting of:wherein M2 has one of the definitions of claim 1, and R19, R20 and R21 are as defined in claim 1 with the proviso, than if R18 is and M2 is silicon then R19 and R20 are not methyl.