Styrene/(substituted styrene) copolymerization by Ph 2Zn-metallocene-MAO systems: Synthesis and characterization of poly(styrene-co-p-hydroxystyrene) copolymers

Rabagliati F.M.; Rodríguez, F.J; Alla A.; Martinez de Ilarduya A.; Munoz-Guerra, S

Keywords: hydrolysis, systems, crystal, synthesis, structure, copolymerization, compound, copolymers, catalysts, metallocene, hydroxylation, copolymer, monomer, polystyrene, organometallics, crystallinity, thermodynamic, properties, initiator, chemical, Reaction, (chemical), Polystyrenes, Comonomers, homopolymer, hydroxylated

Abstract

Poly(styrene-co-p-tert-butyldimethylsilyloxystyrene) copolymers, P(S/p-TBDMSOS), with contents in the substituted comonomer within the 0-50% range were prepared using combined Ph 2Zn-CpTiCl 3-MAO initiator systems and some of them were used as precursors of poly(styrene-co-p-hydroxystyrene), P(S/p-HOS), copolymers. p-tert-Butyldimethylsilyloxystyrene was synthesized from p-hydroxybenzaldehyde by protecting the hydroxyl group with tert-butyldimethylchlorosilane and converting the aldehyde group into vinyl through the Wittig reaction. The P(S/p-TBDMSOS) copolymers with contents in substituted units equal or higher than 25% were atactic and those with content higher than 5% were amorphous. P(S/p-HOS) copolymers containing up to 20% of hydroxylated units were obtained by full hydrolysis in acidic medium of the corresponding P(S/p-TBDMSOS). The hydroxylated copolystyrenes displayed crystallinity for the whole range of studied compositions and their crystalline structure was essentially similar to that of s-PS homopolymers. The influence of the substituent on the modified-MAO catalyzed copolymerization and on the thermal properties of the resulting copolymers was comparatively examined. © 2007 Elsevier Ltd. All rights reserved.

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Título de la Revista: POLYMER
Volumen: 48
Número: 16
Editorial: ELSEVIER SCI LTD
Fecha de publicación: 2007
Página de inicio: 4646
Página final: 4652
URL: http://www.scopus.com/inward/record.url?eid=2-s2.0-34447518594&partnerID=q2rCbXpz