IL85097A

Catalysts based on derivatives of a bis(cyclopentadienyl)group ivb metal compound,their preparation and their use in polymerization processes

Abstract

A catalyst is prepared by combining a first compound consisting of a bis(cyclopentadienyl)zirconium compound having one of the following general formulae:Wherein:(A-Cp) is either (Cp)(Cp*) or Cp-A'-Cp* and Cp and Cp* are the same or different substituted or unsubstituted cyclopentadienyl radicals;A' is a covalent bridging group;L is an olefin, diolefin or aryne ligand;Zr is zirconium;X<sub>1</sub> and X<sub>2</sub> are, independently, selected from the group consisting of hydride radicals, hydrocarbyl radicals, substituted-hydrocarbyl radicals, organometalloid radicals and the like;X'<sub>1</sub> and X'<sub>2</sub> are joined and bound to the zirconium atom to form a metallacycle, in which the zirconium, X'<sub>1</sub> and X'<sub>2</sub> form a hydrocarbocyclic ring containing from about 3 to about 20 carbon atoms; andR is a substituent on one of the cyclopentadienyl radicals which is also bound to the zirconium atom. With a second compound comprising a cation capable of donating a proton and a bulky, labile anion containing a single boron atom, and a plurality of aromatic radicals capable of stabilizing the zirconium cation formally having a coordination number of 3 and a valence of +4 which is formed as a result of the combination, said second compound having the general formula:         [L'-H]<sup>+</sup>[BAr<sub>1</sub>Ar<sub>2</sub>X<sub>3</sub>X<sub>4</sub>]<sup>-</sup>Wherein:L' is a neutral Lewis base;H is a hydrogen atom;[L'-H]<sup>+</sup> is a Bronsted acid;B is boron in a valence state of 3;Ar<sub>1</sub> and Ar<sub>2</sub> are the same or different aromatic or substituted-aromatic hydrocarbon radicals which may be linked to each other through a stable bridging group; andX<sub>3</sub> and X<sub>4</sub> are, independently, selected from the group consisting of hydride radicals, halide radicals, hydrocarbyl radicals, substituted-hydrocarbyl radicals, organometalloid radicals and the like. Many of the catalysts thus formed are stable and isolable and may be recovered and stored. The catalysts may be preformed and then used to polymerize olefins, diolefins and/or acetylenically unsaturated compounds either alone or in combination with each other or with other monomers or the catalysts may be formed in situ during polymerization by adding the separate components to the polymerization reaction. The catalyst will be formed when the two components are combined in a suitable solvent or diluent at a temperature within the range from about -100°C to about 300°C. The catalysts thus prepared afford better control of polymer molecular weight and are not subject to equilibrium reversal. The catalysts thus produced are also less pyrophoric than the more conventional Ziegler-Natta olefin polymerization catalysts.

IL85097A, drawing sheet 1
Sheet 1 of 4

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

18 claims: 6 independent, 12 dependent

  1. 1
    CLAIMS:1. Method for preparing a catalyst comprising the steps of: (a) Combining, in a suitable solvent or diluent, at least one first compound consisting of a bisCcyclopentadienyl)metal compound containing at least one substituent capable of reacting with a proton, said metal being selected from the group consisting of titanium, zirconium and hafnium and at least one second compound comprising a cation capable of donating a proton and an anion which is a single coordination complex comprising a plurality of lipophilic radicals covalently coordinated to and shielding a central charge-bearing metal or metalloid atom, which anion is bulky, labile and capable of stabilizing the metal cation formed as a result of the reaction between the two compounds;(b) Maintaining the contacting in step (a) for a suffici ent period of time to permit the proton provided by the cation of said second compound to react with said substituent contained in said bis(cyclopentadienyl)metal compound;and (c) Recovering an active catalyst as a direct product or as a decomposition product of one or more of said direct products from step (b).
  2. 2
    Method according to Claim 1 wherein said bis(cyclopentadienyl)metal compound may be represented by the following general formulae:1. (A-Cp)MX!X 2 2. (A-Cp)MX^X'2
  3. 3
    (A-Cp)ML and/or
  4. 4
    (CpOCCpR)^ Wherein:Mis a metal selected from the group consisting of titanium, zirconium and hafnium;(A-Cp) is either (Cp)(Cp*) or Cp-A'-Cp* and Cp and Cp* are the same or different substituted or unsubstituted cyclopentadienyl radicals;A 1 is a covalent bridging group;L is an olefin, diolefin or aryne ligand;X 1 and X 2 are, independently, selected from the group consisting of hydride radicals, hydrocarbyl radicals, substituted-hydrocarbyl radicals, organometalloid radicals and the like;X^ and X'2 are joined and bound to the metal atom to form a metallacycle, in which the metal atom, X^ and X'2 form a hydrocarbocyclic ring containing from about 3 to about 20 carbon atoms;and R is a substituent on one of the cyclopentadienyl radicals which is also bound to the metal atom. 3. Method according to Claim 1 or Claim 2 wherein said second compound may be represented by the following general formula: [(L'-H) + ]d[(M') m+ Q1Q 2 ---Q n l d Wherein: L' is a neutral Lewis base;H is a hydrogen atom;[L'-H] is a Bronsted acid;M' is a metal or metalloid selected from the Groups subtended by Groups V-B to V-A of the Periodic Table of the Elements;ie., groups V-B, VI-B, VII-B, VIII, I-B, II-B, III-A, IV-A and V-A;0ן to Q n are selected, independently, from the group consisting of hydride radicals, dialkylamido radicals, alkoxide and aryloxide radicals, hydrocarbyl and substituted-hydrocarbyl radicals and organometalloid radicals and any one, but not more than one, of 0ן to Q n may be a halide radical - the remaining 0ן to Q n being, independently, selected from the foregoing radicals;m is an integer from 1 to 7;n is an integer from 2 to 8;and n - m = d. 4. Method according to any of the preceding claims wherein said second compound may be represented by the general formula: [L׳-H] + [BAr 1 Ar 2 X 3 X 4 ]־ Wherein: L 1 is a neutral Lewis base;H is a hydrogen atom;[L'-H] + is a Bronsted acid;B is boron in a valence state of 3;Arן and Ar 2 are the same or different aromatic or substituted-aromatic hydrocarbon radicals which radicals may be linked to each other through a stable bridging group;and X 3 and X 4 are, independently, selected from the group consisting of hydride radicals, halide radicals and hydrocarbyl and substituted-hydrocarbyl radicals, organometalloid radicals and the like.
  5. 5
    Method according to any of the preceding claims wherein the first compound is of the general formula 1 in Claim 2 and wherein said second compound is a tri substituted ammonium salt of an unsubstituted or substituted aromatic boron compound, with said first compound being optionally a bis(cyclopentadienyl)metal compound containing two, independently, substituted or unsubstituted cyclopentadienyl radicals and two lower alkyl substituents or two hydrides, the metal being preferably zirconium or hafnium.
  6. 6
    Method of Claim 5 wherein said second compound is a tri(n-butyl)ammonium tetraiphenyl)boron, in which case preferably said first compound is a bis(pentamethylcyclopentadienyl)zirconium dimethyl;or said second compound is N,N-dimethyl anil ini urn tetra(phenyl)boron, in which caje said first compound is preferably a bis[l ,3-bis(trimethylsilyl)cyclopentadienyl]zirconium dimethyl.
  7. 7
    Method according to Claim 5 wherein said second compound is selected from the group consisting of tri(n-butyl)ammonium tetra(p-tolyl)boron, tri(n-butyl)ammonium tetra(o-tolyl)boron, tri(n-butyl)ammonium tetra(m,m-dimethyl phenyl)boron and tri(n-butyl)ammonium tetra(o,m-dimethylphenyl)boron, in which case preferably said first compound is a b!s(pentamethylcyclopentadienyl)zirconium dimethyl;or wherein said second compound is selected from the group consisting of tri(n-butyl)ammonium tetraip-tolyl)boron and tri(n-butyl)ammonium tetra (p-ethylphenyl)boron, in which case preferably said first compound is selected from the group consisting of bis(pentamethylcyclopentadienyDzirconi urn dimethyl, and (pentamethyl cyclopentadienyl)(cyclopenta- . dienyl)zirconium dimethyl;or wherein said second compound is selected from the Group consisting of tri(n-butyl)ammonium tetra(pentafluorophenyl)boron and Ν,Ν-dimethylanilinium tetra(pentafluorophenyl)boron.
  8. 8
    Method according to any of claims 1 to 4 wherein the first compound is of the general formula 2 in Claim 2 and wherein said second compound is a tri substituted ammonium salt of a tetra(substituted-aromatic)boron compound, preferably N,N-dimethylanilinium tetra(pentafluorophenyl)boron, in which case preferably said first compound is selected from the group consisting of 1-bis(cyclopentadienyl)titana-3-dimethyl silacyclobutane, 1-bis(cyclopentadienyl)zircona-3-dimethyl silacyclobutane and 1-bi s(eye 1 opentadi enyl)hafna-3-di methyl si 1acycl obutane.
  9. 9
    Method according to any of claims 1 to 4 wherein the first compound is of the general formula 3 in Claim 2 and wherein said second compound is a tri substituted ammonium salt of a tetra(substituted-aromatic)boron compound, preferably tri(n-butyl)ammonium tetra(pentafluorophenyl)boron, in which case preferably said first compound is selected from the group consisting of bis(cyclopentadienyl)zircon!um(2,3-dimethyl-l,3-butadiene) and bi s(cyclopentadi enyl)hafnium(2,3-dimethyl-1,3-butadiene).
  10. 10
    Method according to any of claims 1 to 4 wherein the first compound is of the general formula 4 in Claim 2 and wherein said second compound is a tri substituted ammonium salt of a tetra(substituted-aromatic)boron compound, said first compound being preferably selected from the group consisting of (pentamethylcyclo- pentadienyl)(tetramethyl cyclopentadienyl methylene)zirconiurn phenyl and (pentamethylcyclopentadienyl)(tetramethylcyclopentadienylmethylene)hafniurn benzyl in which case said second compound is preferably tri(n־butyl)ammonium tetra(pentafluorophenyl)boron or a Ν,Ν-dimethylanilinium tetrafphenyl)boron compound.
  11. 11
    Method for polymerizing an a-olefin, diolefin and/or an acetylenically unsaturated monomer containing from 2 to about 18 carbon atoms and/or an acetylenically unsaturated compound containing from 2 to about 18 carbon atoms either alone or in combination with each other or with other monomers comprising the steps of:(a) contacting an olefin, diolefin and/or an acetylenically unsaturated compound containing from 2 to about 18 carbon atoms either alone or in combination with each other or with other monomers in a suitable carrier, solvent or diluent with a catalyst prepared previously or in situ during polymerization by a method according to any of the preceding claims;(b) continuing the contacting of step (a) for a sufficient period of time to polymerize at least a portion of the monomer or monomers;(c) recovering a polymer product.
  12. 12
    Catalyst prepared by a method according to any of claims 1 to 10.
  13. 13
    A polymer comprising a monomer selected from the group consisting of a-olefins, diolefins, acetylenically unsaturated monomers and mixtures there prepared with a catalyst according to Claim 12.
  14. 14
    Composition of matter containing an organometallic compound having the following general structural formula:wherein: Cp* is a peralkyl-substituted cyclopentadienyl radical wherein each of said alkyl substitutions may be the same or a different C 1 ־C 2 q alkyl radical;B is boron;Zr is zirconium;Ph 1 is a phenyl or alkyl-substituted phenyl radical and each of the 3 Ph's may be the same or different and the alkyl substitutions may be C^C^;and R is hydrogen or an alkyl group having from 1 to about 14 carbon atoms.
  15. 15
    Composition of matter according to Claim 14 having the following general structural formula:wherein Cp* is a (pentamethylcyclopentadienyl) radical;B(p-tolyl)3 + (Cp*) 2 Zr ch 3 wherein Cp* is a (pentamethylcyclopentadienyl) radical;B[p-CH 3 CH 2 (C 6 H 5 )] 3 ch 3 ch 2 wherein Cp* is a (pentamethylcyclopentadienyl) radical;or B(p-tolyl) 3 CH 3 wherein Cp* is a (ethyl tetramethyl cyclopentadienyl) radical.
  16. 16
    As a composition of matter, an organometallic compound represented by one of the following general formulae:1. {[(A-Cp)MX 1 ]} d i(M t ) m+ Q|Q 2 ..Q n l d ” Wherein: M is a metal selected from the Group consisting of titanium, zirconium, and hafnium;(A-Cp) is either (Cp)(Cp*) or Cp-A'-Cp* and Cp and Cp* are the same or different substituted or unsubstituted cyclopentadienyl radicals;A' is a covalent bridging group;X 1 is selected from the group consisting of hydride radicals, hydrocarbyl radicals;substituted-hydrocarbyl radicals, organometalloid radicals and the like;L' is a neutral Lewis base;M' is a metal or metalloid selected from the Groups encompassed by Groups V-B to VI-A of the Periodic Table of the Elements;ie., Groups V-B, VI-B, VII-B, VIII, I-B, II-B, III-A, IV-A, and V-A;0ן to Q n are selected, independently, from the Group consisting of hydride radicals, dialkylamido radicals, alkoxide and aryloxide radicals, hydrocarbyl and substituted-hydrocarbyl radicals, and organometalloid radicals and any one, but not more than one, of the 0ן to Q n may be a halide radical - the remaining 0ן to Q n being, independently, selected from the foregoing radicals;m is an integer from 1 to 7;n is an integer from 2 to 8;and n - m = d.
  17. 17
    The composition of matter of Claim 16 wherein said anion may be represented by the following general formula:[ΒΑ Γ] Αγ 2 Χ 3 Χ 4 ] Wherein: B is boron in a valence state of 3;Ar-| and Ar 2 are the same or different aromatic or substituted-aromatic hydrocarbon radicals which radicals may be linked to each other through a stable bridging group;and X 3 and X 4 are, independently selected from the group consisting of hydride radicals, halide radicals, and hydrocarbyl and substituted-hydrocarbyl radicals, organometalloid radicals, and the like.
  18. 18
    The composition of matter of Claim 17 wherein said anion is chosen from the group consisting of unsubstituted tetra(aromatic)boron anions and substituted tetra(aromatic)boron an?־׳™׳