EP0903357A1

Synthesis of 1,4-trans-polybutadiene using a lanthanide organic acid salt catalyst

Abstract

The invention provides a catalyst composition, comprising: (a) an organolithium compound; and, (b) an organic acid salt of lanthanide series element; wherein: (1) only components (a) and (b) are required to promote the synthesis of 1,4-trans-polybutadiene; (2) the ratio of component (a) to component (b) is selected to maximize formation of the trans structure of said 1,4-trans-polybutadiene; and, (3) components (a) and (b) are selected for enabling further diblock synthesis. The invention further contemplates a process for using the catalyst to synthesize 1,4-trans-polybutadiene and other polymers and copolymers having trans configuration in the conjugated diene monomer contributed units.

EP0903357A1, drawing sheet 1
Sheet 1 of 13

Term

Term ended

Projected expiry passed 7 September 2018, 8 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

45 claims: 3 independent, 42 dependent

  1. 1
    A catalyst composition, consisting essentially of:(a) an organolithium compound;and, (b) an organic acid salt of lanthanide series element;wherein: (1) only components (a) and (b) are required to promote the synthesis of 1,4-transpolybutadiene;(2) the ratio of component (a) to component (b) is selected to maximize formation of the trans structure of said 1,4-trans-polybutadiene;and, (3) components (a) and (b), and the ratio thereof are selected for enabling further diblock synthesis.
  2. 14
    A process for the synthesis of 1,4-trans-polybutadiene product having a substantially high yield of trans structure, comprising:polymerizing butadiene monomers in the presence of a catalyst system comprising: (a) an alkyllithium catalyst;and, (b) an organic acid salt of lanthanide series element;wherein the ratio of component (a) to component (b) is selected sufficient to maximize formation of said trans structure of said 1,4-trans-polybutadiene.
  3. 31
    A process for the synthesis of polymers and copolymers containing conjugated diene contributed monomer units and having a substantially high yield of trans structure in the conjugated diene contributed monomer units comprising:polymerizing conjugated diene monomers in the presence of a catalyst system comprising: (a) an alkyllithium catalyst;and, (b) an organic acid salt of lanthanide series element Ln;wherein the ratio of component (a) to component (b) is selected sufficient to maximize formation of said trans structure in the conjugated diene contributed monomer units.