Biocatalysis in Polymer Chemistry

Biocatalysis in Polymer Chemistry

Biocatalysis in Polymer Chemistry

Biocatalysis in Polymer Chemistry

eBook

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Overview

Searching for green and environmentally friendly polymerization methods by using enzymes? This first handbook on this hot and essential topic contains the whole chain of knowledge of biocatalysis in polymer chemistry in both a comprehensive and compact form. International leading experts cover all important aspects, from enzymatic monomer synthesis to polymer modification and degradation.

While the major focus of the book is on enzymatic polymerizations of the polymer classes reported so far, industrial contributions are also included, making this invaluable reading for biochemists and polymer chemists working in academia and industry.

From the contents:

  • Monomers and macromonomers from renewable resources
  • Enzyme immobilization on layered and nanostructured materials
  • Enzymatic polymerization of polymers including polyesters, polyamides, vinylpolymers, polyaniline, polysaccharides, poly-peptides and other
  • Enzymatic degradation and polymer modifications
  • Polymerases for biosynthesis of storage compounds
  • Chiral polymers by lipase catalysis
  • Enzymes in the synthesis of block and graft copolymers
  • Biocatalytic polymerization in exotic solvents
  • Molecular modeling approaches to enzymatic polymerizations and more

Product Details

ISBN-13: 9783527632558
Publisher: Wiley
Publication date: 07/18/2011
Sold by: JOHN WILEY & SONS
Format: eBook
Pages: 463
File size: 6 MB

About the Author

Katja Loos is an Associate Professor at the Department of Polymer Chemistry of the Zernike Institute for Advanced Materials of the University of Groningen, The Netherlands. Her main research interests are currently the different aspects of enzymatic polymerizations and modifications of polymers, biocatalytic synthesis of novel monomers, polysaccharides, the interaction of proteins with specialized surfaces, living polymerization techniques and block copolymer self assemblies.
She specialized in Organic Chemistry and Polymer Chemistry during her university studies at the Johannes Gutenberg Universitat in Mainz, Germany, and moved into the field of Enzymatic Polymerizations during her doctoral research at the University of Bayreuth, Germany. After a postdoctoral research stay at the Polytechnic University in Brooklyn, NY, USA, she started an independent research group at the University of Groningen in the field of Biocatalysis in Polymer Chemistry.

Table of Contents

Monomers and Macromonomers from Renewable Resources
Enzyme Immobilization on Layered and Nanostructured Materials
Improved Immobilization Supports for Candida Antarctica Lipase B
Enzymatic Polymerization of Polyesters
Enzyme-Catalyzed Synthesis of Polyamides and Polypeptides
Enzymatic Polymerization of Vinylpolymers
Enzymatic Polymerization of Phenolic Monomers
Enzymatic Synthesis of Polyaniline and Other Electrically Conductive Polymers
Enzymatic Polymerization of Polysaccharides
Polymerases for Biosynthesis of Storage Compounds
Chiral Polymers by Lipase Catalysis
Enzymes in the Synthesis of Block and Graft Copolymers
Biocatalytic Polymerization in Exotic Solvents
Molecular Modeling Approach to Enzymatic Polymerization
Enzymatic Polymer Modification
Enzymatic Polysaccharide Degradation
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