Article
Publicly Available
Synthesis of copolymers of ethylene and (meth)acrylates or styrene by an original dual radical/catalytic mechanism
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Published/Copyright:
April 29, 2012
Online erschienen: 2012-4-29
Erschienen im Druck: 2012-4-30
© 2013 Walter de Gruyter GmbH, Berlin/Boston
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- Preface
- Preface
- More with less: Advances in flow and paper-based monitoring of nutrients in aquatic systems
- Laboratory automation based on flow techniques
- Computer-controlled fluid-flow chemical analysis (CC-FCA) and its application to environmental analytical chemistry
- Reagent-free analytical flow methods for the soft drink industry: Efforts for environmentally friendly chemical analysis
- Chemiluminescence immunoassay for a nonionic surfactant using a compact disc-type microfluidic platform
- Pulsed chronopotentiometric membrane electrodes based on plasticized poly(vinyl chloride) with covalently bound ferrocene functionalities as solid contact transducer
- Cauliflower polyaniline/multiwalled carbon nanotube electrode and its applications to hydrogen peroxide and glucose detection*
- Polyisoprene synthesized via cationic polymerization: State of the art
- Activated monomer mechanism in the cationic polymerization of L,L-lactide
- Advances in cationic photopolymerization
- Rapid and controlled synthesis of hydrophobic polyethers by monomer activation
- Synthesis of copolymers of ethylene and (meth)acrylates or styrene by an original dual radical/catalytic mechanism
- Green polymer chemistry: Living oxidative polymerization of dithiols
- Terminology and nomenclature for macromolecular rotaxanes and pseudorotaxanes (IUPAC Recommendations 2012)
- A brief guide to polymer nomenclature (IUPAC Technical Report)
- JCAMP-DX for circular dichroism spectra and metadata (IUPAC Recommendations 2012)
Keywords for this article
catalysis;
free radicals;
(meth)acrylates;
olefins;
polymerization
Articles in the same Issue
- Preface
- Preface
- More with less: Advances in flow and paper-based monitoring of nutrients in aquatic systems
- Laboratory automation based on flow techniques
- Computer-controlled fluid-flow chemical analysis (CC-FCA) and its application to environmental analytical chemistry
- Reagent-free analytical flow methods for the soft drink industry: Efforts for environmentally friendly chemical analysis
- Chemiluminescence immunoassay for a nonionic surfactant using a compact disc-type microfluidic platform
- Pulsed chronopotentiometric membrane electrodes based on plasticized poly(vinyl chloride) with covalently bound ferrocene functionalities as solid contact transducer
- Cauliflower polyaniline/multiwalled carbon nanotube electrode and its applications to hydrogen peroxide and glucose detection*
- Polyisoprene synthesized via cationic polymerization: State of the art
- Activated monomer mechanism in the cationic polymerization of L,L-lactide
- Advances in cationic photopolymerization
- Rapid and controlled synthesis of hydrophobic polyethers by monomer activation
- Synthesis of copolymers of ethylene and (meth)acrylates or styrene by an original dual radical/catalytic mechanism
- Green polymer chemistry: Living oxidative polymerization of dithiols
- Terminology and nomenclature for macromolecular rotaxanes and pseudorotaxanes (IUPAC Recommendations 2012)
- A brief guide to polymer nomenclature (IUPAC Technical Report)
- JCAMP-DX for circular dichroism spectra and metadata (IUPAC Recommendations 2012)