2009•MacromoleculesRequires access

Synthesis, Characterization, and Visualization of High-Molecular-Weight Poly(glycidol-graft-ϵ-caprolactone) Starlike Polymers

Marc Hans, Ahmed Mourran, Artur Henke, Helmut Keul, Martin Möller

Open publisher page 16 citations

Abstract

High-molecular-weight polymers with defined architectures are generally prepared by atom transfer radical polymerization. In order to prepare biodegradable structures different polymerization techniques have to be used. Here we present the successful synthesis of biodegradable starlike poly(glycidol- graft -ϵ-caprolactone) copolymers by a combination of anionic and coordinative ring-opening polymerization, their characterization by static and dynamic light scattering and their visualization by scanning force microscopy.

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High-molecular-weight polymers with defined architectures are generally prepared by atom transfer radical polymerization. In order to prepare biodegradable structures different polymerization techniques have to be used. Here we present the successful synthesis of biodegradable starlike poly(glycidol- graft -ϵ-caprolactone) copolymers by a combination of anionic and coordinative ring-opening polymerization, their characterization by static and dynamic light scattering and their visualization by scanning force microscopy.

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Available abstract

High-molecular-weight polymers with defined architectures are generally prepared by atom transfer radical polymerization. In order to prepare biodegradable structures different polymerization techniques have to be used. Here we present the successful synthesis of biodegradable starlike poly(glycidol- graft -ϵ-caprolactone) copolymers by a combination of anionic and coordinative ring-opening polymerization, their characterization by static and dynamic light scattering and their visualization by scanning force microscopy.

Key concepts: Glycidol, Ring-opening polymerization, Caprolactone, Atom-transfer radical-polymerization, Polymerization, Polymer chemistry, Polymer, Materials science

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