Multifunctional initiator for obtaining star-shaped polymers by

Synthetic resins or natural rubbers -- part of the class 520 ser – Synthetic resins – Mixing of two or more solid polymers; mixing of solid...

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525250, 525314, C08F29702, C08F 446

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active

058377786

ABSTRACT:
A multifunctional anionic polymerization initiator which is in the form of a star-shaped polymer, and which is soluble in a nonpolar medium and is substantially free of residual double bonds. The initiator is denoted by the general formula (PA).sub.a N.sup.n- nLi.sup.+. PA is a polymer block of a vinylaromatic or diene monomer A. The variable "a" is the number of branches in the block PA. N is a crosslinked core comprising no or practically no residual double bonds and has the formula (PMc)(RLi).sub.p. Mc is a monomer containing at least two polymerizable double bonds per molecule. PMc is a crosslinked core of at least one polymerized monomer Mc, containing 3 to 30% of residual double bonds in relation to the initial double bonds originating from the monomer Mc. R is an alkyl, aryl, arylalkyl, alkylaryl, cycloalkyl, or alkenyl. The variable "p" is the number of residual double bonds in PMc which are neutralized by RLi. The variable "n" is the number of anionic sites present in the crosslinked core N. A process of making and using the initiator to prepare star-shaped polymers.

REFERENCES:
patent: 3787510 (1974-01-01), Farrar
patent: 4010226 (1977-03-01), Crossland et al.
patent: 4678837 (1987-07-01), Manicinelli
patent: 5247026 (1993-09-01), Erikson et al.
Tsitsilianis et al., Core-First Synthesis of Star Polymers with Potentially Ionogenic Branches, 24 Macromolecules 5897 Oct. 1991.

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