Basics of Polymer Chemistry

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A01=Muralisrinivasan Natamai Subramanian
addition
advanced polymer architecture design
anionic
Anionic Polymerization
Author_Muralisrinivasan Natamai Subramanian
Bifunctional Monomers
Biodegradable Polymer
catalyst technology
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cationic
Cationic Polymerization
Chain Growth
Chain Growth Polymerization
Chain Transfer
Chain Transfer Reactions
condensation
copolymerization techniques
crystallinity
CTA
degradation
Dimethyl Terephthalate
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functional groups
Gel Effect
Long Chain Molecule
macromolecular engineering
Maleic Anhydride
molecular weight distribution
monomer
orientation
polyamides
polyesters
Polymer Chain
Polymer Chemistry
polymer science
polymer synthesis
Polymerization
polyolefins
Poor Drug Permeability
Ring Opening Polymerization
Step Growth Polymerization
Styrene
Styrene Monomer
sustainable materials science
tacticity
Terephthalic Acid
Vinyl Carbazole
Weight Average Molecular Weight
Ziegler Natta Catalyst

Product details

  • ISBN 9788793519015
  • Weight: 471g
  • Dimensions: 156 x 234mm
  • Publication Date: 31 Jul 2017
  • Publisher: River Publishers
  • Publication City/Country: DK
  • Product Form: Hardback
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Basics of Polymer Chemistry is of great interest to the chemistry audience. The basic properties of polymers, including diverse fundamental and applied aspects, are presented. This book constitutes a basis for understanding polymerization, and it presents a comprehensive overview of the scientific research of polymers. The chapters presented can be used as a reference for those interested in understanding the sustainable development in polymers.Basics of Polymer Chemistry provides a balanced coverage of the key developments in this field, and highlights recent and emerging technical achievements. The topics covered present a comprehensive overview of the subject area and are therefore of interest to professors and students. The recent developments in polymerization using catalysts, homo and copolymerization are presented, and it contains current efforts in designing new polymer architectures. Improved property performance attributes of the polymers by controlling their molecular-structural characteristics such as molecular weight distribution, comonomer type content distribution, and branching level are also discussed.

Muralisrinivasan Natamai Subramanian

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