Journal Article

·2004

Synthesis of polydimethylsiloxane‐block‐polystyrene‐block‐polydimethylsiloxane via polysiloxane‐based macroinitiator in supercritical CO2

Mesut Akgün YTU , Sennur Deniz YTU , Nil Baran YTU , Nimet I. Uzun YTU , Nalan A. Akgün YTU , Sali̇h Di̇nçer YTU

Polymer International

Abstract

Abstract Polydimethylsiloxane‐ block ‐polystyrene‐ block ‐polydimethylsiloxane (PDMS‐ b ‐PS‐ b ‐PDMS) was synthesized by the radical polymerization of styrene using a polydimethylsiloxane‐based macroazoinitiator (PDMS MAI) in supercritical CO 2 . PDMS MAI was synthesized by reacting hydroxy‐terminated PDMS and 4,4′‐azobis(4‐cyanopentanoyl chloride) (ACPC) having a thermodegradable azo‐linkage at room temperature. The polymerization of styrene initiated by PDMS MAI was investigated in a batch system using supercritical CO 2 as the reaction medium. PDMS MAI was found to behave as a polyazoinitiator for radical block copolymerization of styrene, but not as a surfactant. The response surface methodology was used to design the experiments. The parameters used were pressure, temperature, PDMS MAI concentration and reaction time. These parameters were investigated at three levels (−1, 0 and 1). The dependent variable was taken as the polymerization yield of styrene. PDMS MAI and PDMS‐ b ‐PS‐ b ‐PDMS copolymers obtained were characterized by proton nuclear magnetic resonance and infrared spectroscopy. The number‐ and weight‐average molecular weights of block copolymers were determined by gel permeation chromatography. Copyright © 2004 Society of Chemical Industry

Keywords

Polydimethylsiloxane Materials science Copolymer Polystyrene Polymer chemistry Styrene Supercritical fluid Polymerization Gel permeation chromatography Radical polymerization Thermogravimetric analysis Chemical engineering Polymer Chemistry Organic chemistry Composite material

Subject Areas

Carbon dioxide utilization in catalysis ·Process Chemistry and Technology ·Physical Sciences
Polymer Foaming and Composites ·Polymers and Plastics ·Physical Sciences
Organometallic Complex Synthesis and Catalysis ·Organic Chemistry ·Physical Sciences

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