The Fractal Physical Chemistry of Polymer Solutions and Melts

The Fractal Physical Chemistry of Polymer Solutions and Melts
Author: G. V. Kozlov,I. V. Doblin,Gennady E. Zaikov
Publsiher: CRC Press
Total Pages: 336
Release: 2013-12-12
Genre: Science
ISBN: 9781926895819

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This book provides an important structural analysis of polymer solutions and melts, using fractal analysis. The book covers the theoretical fundamentals of macromolecules fractal analysis. It then goes on to discuss the fractal physics of polymer solutions and the fractal physics of melts. The intended audience of the book includes specialists in chemistry and physics of polymer synthesis and those in the field of polymers and polymer composites processing.

The Fractal Physical Chemistry of Polymer Solutions and Melts

The Fractal Physical Chemistry of Polymer Solutions and Melts
Author: G. V. Kozlov,I. V. Doblin,Gennady E. Zaikov
Publsiher: CRC Press
Total Pages: 334
Release: 2013-12-12
Genre: Science
ISBN: 9781482230833

Download The Fractal Physical Chemistry of Polymer Solutions and Melts Book in PDF, Epub and Kindle

This book provides an important structural analysis of polymer solutions and melts, using fractal analysis. The book covers the theoretical fundamentals of macromolecules fractal analysis. It then goes on to discuss the fractal physics of polymer solutions and the fractal physics of melts. The intended audience of the book includes specialists in chemistry and physics of polymer synthesis and those in the field of polymers and polymer composites processing.

The Fractal Physics of Polymer Synthesis

The Fractal Physics of Polymer Synthesis
Author: G. V. Kozlov,A. K. Mikitaev,Gennady Efremovich Zaikov
Publsiher: CRC Press
Total Pages: 370
Release: 2013-12-12
Genre: Science
ISBN: 9781926895635

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Using fractal analysis, irreversible aggregation models, synergetics, and percolation theory, this book describes the main reactions of high-molecular substances. It is the first to give the structural and physical grounds of polymers synthesis and curing based on fractal analysis. It provides a single equation for describing the relationship between the reaction rate constants and the equilibrium constants with the nature of the medium.

The Fractal Physics of Polymer Synthesis

The Fractal Physics of Polymer Synthesis
Author: G. V. Kozlov,A. K. Mikitaev,Gennady Efremovich Zaikov
Publsiher: CRC Press
Total Pages: 378
Release: 2013-12-12
Genre: Science
ISBN: 9781482221596

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Using fractal analysis, irreversible aggregation models, synergetics, and percolation theory, this book describes the main reactions of high-molecular substances. It is the first to give the structural and physical grounds of polymers synthesis and curing based on fractal analysis. It provides a single equation for describing the relationship between the reaction rate constants and the equilibrium constants with the nature of the medium.

Fractal Mechanics of Polymers

Fractal Mechanics of Polymers
Author: G. V. Kozlov,Yu G. Yanovskii
Publsiher: CRC Press
Total Pages: 384
Release: 2014-11-12
Genre: Technology & Engineering
ISBN: 9781482255003

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This new book explores the consideration of relationships that connect the structural and basic mechanical properties of polymeric mediums within the frameworks of fractal analysis with cluster model representations attraction. Incidentally, the choice of any structural model of medium or their combinations is defined by expediency and further usage convenience only. This book presents leading-edge research in this rapidly changing and evolving field. The book presents descriptions of the main reactions of high-molecular substances within the frameworks of fractal analysis and irreversible aggregation models. Synergetics and percolation theory were also used. In spite of the enormous number of papers dealing with the influence of the medium on the rate of chemical reactions (including synthesis of polymers), no strict quantitative theory capable of "universal" application has been put forward up until now. It is now possible to describe the relationship between the reaction rate constants and the equilibrium constants with the nature of the medium in which the reactions take place by means of a single equation. This important book for the first time gives structural and physical grounds of polymers synthesis and curing, and the fractal analysis is used for this purpose. This new book: • Highlights some important areas of current interest in polymer products and chemical processes • Focuses on topics with more advanced methods • Emphasizes precise mathematical development and actual experimental details • Analyzes theories to formulate and prove the physicochemical principles • Provides an up-to-date and thorough exposition of the present state of the art of complex polymeric materials

New Trends in Physics and Physical Chemistry of Polymers

New Trends in Physics and Physical Chemistry of Polymers
Author: Lieng-Huang Lee
Publsiher: Springer Science & Business Media
Total Pages: 640
Release: 2012-12-06
Genre: Science
ISBN: 9781461305439

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Between June 6-10, 1988, the Third Chemical Congress of North America was held at the Toronto Convention Center. At this rare gathering, fifteen thousand scientists attended various symposia. In one of the symposia, Professor Pierre-Gilles de Gennes of College de France was honored as the 1988 recipient of the Amer ican Chemical Society Polymer Chemistry Award, sponsored by Mobil Chemical Corporation. For Professor de Gennes, this international setting could not be more fitting. For years, he has been a friend and a lecturer to the world scientific community. Thus, for this special occasion, his friends came to recount many of his achievements or report new research findings mostly derived from his theories or stimulated by his thoughts. In this volume of Proceedings, titled New Trends in Physics and Physical Chemistry of Polymers, we are glad to present the revised papers for the Symposium and some contributed after the Symposium. In addition, we intend to include most of the lively discussions that took plaGe during the conference. This volume contains a total of thirty-six papers divided into six parts, primarily according to the nature of the subject matter: • Adsorption of Colloids and Polymers. • Adhesion, Fractal and Wetting of Polymers. • Dynamics and Characterization of Polymer Solutions. • Diffusion and Interdiffusion of Polymers. • Entanglement and Reptation of Polymer Melts and Networks. • Phase Transitions and Gel Electrophoresis.

Chemical and Structure Modification of Polymers

Chemical and Structure Modification of Polymers
Author: Kajetan Pyrzynski,Grzegorz Nyszko,Gennady E. Zaikov
Publsiher: CRC Press
Total Pages: 440
Release: 2016-01-05
Genre: Science
ISBN: 9781498727440

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This timely volume provides an overview of polymer characterization test methods and presents experimental research in polymers using modern methods. Each chapter describes the principle of the respective method, as well as the detailed procedures of experiments with examples of actual applications and demonstrates the advantages and disadvantages of each physical technique. Thus, readers will be able to apply the concepts as described in the book to their own experiments. The successful characterization of polymer systems is one of the most important objectives of today’s experimental research of polymers. Considering the tremendous scientific, technological, and economic importance of polymeric materials, especially in industry, it is impossible to overestimate the usefulness of experimental techniques in this field. Since the chemical, pharmaceutical, medical, and agricultural industries, as well as many others, depend on this progress to an enormous degree, it is critical to be as efficient, precise, and cost-effective in our empirical understanding of the performance of polymer systems as possible. This presupposes our proficiency with, and understanding of, the most widely used experimental methods and techniques. The methods and instrumentation described in this volume represent modern analytical techniques useful to researchers, product development specialists, and quality control experts in polymer synthesis and manufacturing. Engineers, polymer scientists, and technicians will find this volume useful in selecting approaches and techniques applicable to characterizing molecular, compositional, rheological, and thermodynamic properties of elastomers and plastics.

Physical Chemistry of Macromolecules

Physical Chemistry of Macromolecules
Author: Gary Patterson
Publsiher: CRC Press
Total Pages: 152
Release: 2007-03-09
Genre: Technology & Engineering
ISBN: 9781420014501

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Written by a chemical physicist specializing in macromolecular physics, this book brings to life the definitive work of celebrated scientists who combined multidisciplinary perspectives to pioneer the field of polymer science. The author relates firsthand the unique environment that fostered the experimental breakthroughs underlying some of today’s most widely accepted theories, mathematical principles, and models for characterizing macromolecules. Physical Chemistry of Macromolecules employs the unifying principles of physical chemistry to define the behavior, structure, and intermolecular properties of macromolecules in both solution and bulk states. The text explains the experimental techniques, such as light scattering, and results used to support current theories. Examining both equilibrium and transport properties, the book describes the properties of dilute, semi-dilute, and concentrated polymer solutions, including compressible fluids. It then covers amorphous liquids and glasses, and polymer networks. The final chapters discuss the properties of solutions containing stiff-chain molecules and polyelectrolytes. Topics also include the macromolecular nature of rubber elasticity, viscoelasticity, and the distribution of relaxation times associated with the glass transition. By explaining the experimental and mathematical basis for the theories and models used to define macromolecular behavior, Physical Chemistry of Macromolecules demonstrates how these techniques and models can be applied to analyze and predict the properties of new polymeric materials.