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Journal ArticleDOI

Polymerization of oligo(ethylene glycol) (meth)acrylates: Toward new generations of smart biocompatible materials

Jean-François Lutz
- 01 Jun 2008 - 
- Vol. 46, Iss: 11, pp 3459-3470
TLDR
Non linear PEG analogues can be either insoluble in water, readily soluble up to 100 °C, or thermoresponsive, and can be used for building a wide variety of modern materials such as biosensors, artificial tissues, smart gels for chromatography, and drug carriers.
Abstract
Monomers composed of a (meth)acrylate moiety connected to a short poly(ethylene)glycol (PEG) chain are versatile building-blocks for the preparation of “smart” biorelevant materials. Many of these monomers are commercial and can be easily polymerized by either anionic, free-radical, or controlled radical polymerization. The latter approach allows synthesis of well-defined PEG-based macromolecular architectures such as amphiphilic block copolymers, dense polymer brushes, or biohybrids. Furthermore, the resulting polymers exhibit fascinating solution properties in aqueous medium. Depending on the molecular structure of their monomer units, non linear PEG analogues can be either insoluble in water, readily soluble up to 100 °C, or thermoresponsive. Thus, these polymers can be used for building a wide variety of modern materials such as biosensors, artificial tissues, smart gels for chromatography, and drug carriers. © 2008 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 46: 3459–3470, 2008

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Nanostructured functional materials prepared by atom transfer radical polymerization

TL;DR: The fundamentals of the technique are discussed, along with how it can be used to synthesize macromolecules with controlled molecular architecture, and how their self-assembly can create nanostructured functional materials.
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Transition metal-catalyzed living radical polymerization : toward perfection in catalysis and precision polymer synthesis

TL;DR: Catalytic Solvents: Catalyst Disproportionation 4981 2.2.1.
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New directions in thermoresponsive polymers.

TL;DR: By highlighting recent examples of newly developed thermoresponsive polymer systems, it is hoped to promote the development of new generations of smart materials.
Journal ArticleDOI

Thermoresponsive Polymers for Biomedical Applications

TL;DR: This review focuses mainly on the studies published over the last 10 years on the synthesis and use of thermoresponsive polymers for biomedical applications including drug delivery, tissue engineering and gene delivery.
References
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Journal ArticleDOI

Click Chemistry: Diverse Chemical Function from a Few Good Reactions.

TL;DR: In this paper, a set of powerful, highly reliable, and selective reactions for the rapid synthesis of useful new compounds and combinatorial libraries through heteroatom links (C-X-C), an approach called click chemistry is defined, enabled, and constrained by a handful of nearly perfect "springloaded" reactions.
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