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Now extensively updated, Polymer Science & Technology, Third Edition offers easy-to-read coverage of all of the field’s fundamentals, from core principles to the latest advances in synthetic and physical polymer chemistry and the newest applications.
This edition is designed to serve equally well as a tutorial for graduate-level and advanced undergraduate-level students and as a reference for practicing scientists and engineers. Extensive new coverage in this edition includes:
· The use of ionic liquids
· Recent advances in nano polymer science
· New alternative energy
…mehr

Produktbeschreibung
Now extensively updated, Polymer Science & Technology, Third Edition offers easy-to-read coverage of all of the field’s fundamentals, from core principles to the latest advances in synthetic and physical polymer chemistry and the newest applications.

This edition is designed to serve equally well as a tutorial for graduate-level and advanced undergraduate-level students and as a reference for practicing scientists and engineers. Extensive new coverage in this edition includes:

· The use of ionic liquids

· Recent advances in nano polymer science

· New alternative energy applications, including polymers in fuel cell membranes and organic solar cells

· New medical/bioengineering applications, including polymers as scaffolds in tissue engineering

· A completely new chapter introducing computational polymer science, with coverage of advanced molecular simulations and artificial neural networks

This edition also contains a greatly expanded and significantly updated collection of example and exercise problems.

The Third Edition’s comprehensive coverage also includes: properties of polymers in solutions and in the melt, rubber, and solid states; discussions of all important categories of plastics; and much more. Example calculations are presented throughout.

Product Description
The Definitive Guide to Polymer Principles, Properties, Synthesis, Applications, and Simulations

Now fully revised, Polymer Science and Technology, Third Edition, systematically reviews the field’s current state and emerging advances. Leading polymer specialist Joel R. Fried offers modern coverage of both processing principles and applications in multiple industries, including medicine, biotechnology, chemicals, and electronics.

This edition’s new and expanded coverage ranges from advanced synthesis to the latest drug delivery applications. New topics include controlled radical polymerization, click chemistry, green chemistry, block copolymers, nanofillers, electrospinning, and more.

A brand-new chapter offers extensive guidance for predicting polymer properties, including additional coverage of group correlations, and new discussions of the use of topological indices and neural networks. This is also the first introductory polymer text to fully explain computational polymer science, including molecular dynamics and Monte Carlo methods. Simulation concepts are supported with many application examples, ranging from prediction of PVT values to permeability and free volume.

Fried thoroughly covers synthetic polymer chemistry; polymer properties in solution and in melt, rubber, and solid states; and all important categories of plastics. This revised edition also adds many new calculations, end-of-chapter problems, and references.

In-depth coverage includes

Polymer synthesis: step- and chain-growth; bulk, solution, suspension, emulsion, solid-state, and plasma; ionic liquids, and macromers; and genetic engineering

Amorphous and crystalline states, transitions, mechanical properties, and solid-state characterization

Polymers and the environment: degradation, stability, and more

Additives, blends, block copolymers, and composites–including interpenetrating networks, nanocomposites, buckyballs, carbon nanotubes, graphene, and POSS

Biopolymers, natural polymers, fibers, thermoplastics, elastomers, and thermosets

Engineering and specialty polymers, from polycarbonates to ionic polymers and high-performance fibers

Polymer rheology, processing, and modeling

Correlations and simulations: group contribution, topological indices, artificial neural networks, molecular dynamics, and Monte Carlo simulations

Features + Benefits

Comprehensive coverage of polymer synthesis including new coverage of controlled radical polymerization and the use of click chemistry
This text describes how plastics, rubber, and fibers are synthesized, processed into useful materials, characterized, and compounded with fillers and other additives to improve performance for specific applications. Their use in a wide variety of technologies including membrane separations, electronics, and energy production and storage is described. A new chapter in the Third Edition shows how computer correlations and simulations can be used to predict properties of new plastics and to better understand how existing plastics perform.
Autorenporträt
Dr. Joel R. Fried is professor and chair of the department of chemical and biomedical engineering at Florida State University. Previously, he was professor and the Wright Brothers Endowed Chair in Nanomaterials at the University of Dayton. He is also professor emeritus of chemical engineering and fellow of the graduate school at the University of Cincinnati, where he directed the Polymer Research Center and led the department of chemical engineering. He holds B.S. degrees in biology and chemical engineering, and an M.E. degree in chemical engineering from Rensselaer Polytechnic Institute. He also holds M.S. and Ph.D. degrees in polymer science and engineering from the University of Massachusetts, Amherst.