Fractal Physics of Polymer Synthesis

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Branching Degree
catalytic polymer systems
Category=PHVQ
Category=PNNP
coil
conversion
Conversion Degree
coordinates
cross-linked network formation
Curing Reaction
degree
Dependence Df
dimension
double
Double Logarithmic Coordinates
duration
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eq_isMigrated=2
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fractal analysis in polymer chemistry
Fractal Analysis Methods
Fractal Dimension
Fractal Dimension Df
Fractal Space
Gelation Point
Glass Transition Temperature Tg
High Temperature Polycondensation
Interactions Polymer Solvent
Interfacial Polycondensation
irreversible aggregation
Irreversible Aggregation Models
logarithmic
macromolecular
Macromolecular Coil
macromolecular reaction kinetics
Mechanism Cluster Cluster
Mechanism Particle Cluster
MWD Curve
percolation theory applications
Polycondensation
Polycondensation Process
Radical Polymerization
reaction
Reaction Duration
Reaction Rate Constant Kr
Stirring Intensity
synergetic modeling
The Branched Polymers Synthesis
The Curing of Cross-Linked Polymers
The Fractal Analysis and Synergetics of Catalytic Systems
Transesterification Reaction
Value Df

Product details

  • ISBN 9781774632925
  • Weight: 453g
  • Dimensions: 152 x 229mm
  • Publication Date: 31 Mar 2021
  • Publisher: Apple Academic Press Inc.
  • Publication City/Country: CA
  • Product Form: Paperback
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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.

G. V. Kozlov, DSc, is a Senior Scientist at UNIID of Kabardino-Balkarian State University in Nal’chik, Russian Federation during 1981–1994 and from 1997 until now. His scientific interests include the structural grounds of properties of polymeric materials of all classes and states: physics of polymers, polymer solutions and melts, and composites and nanocomposites. He proposed to consider polymers as natural nanocomposites. He is the author of more than 1500 scientific publications, including 30 books, published in the Russian Federation, Ukraine, Great Britain, German Federal Republic, Holland, and USA.

A. K. Mikitaev, DSc, is Professor and Head of the Chair of organic chemistry and high-molecular compounds at Kabardino-Balkarian State University in Nal’chik, Russiaduring 1971–1990 and from 2004 until now. He set up the Scientific-Educational Center "Polymer and Composites" in 2008. He developed and worked in industry on the production technology of poly(butylenes terephtalate) and nanocomposite materials and its basis, including nanocomposite thermoelastoplastics. His scientific interest in synthesis of polymers includes the developing strategies for manufacture of polymers of different classes. Synthesis, characterization and performance are all integral parts of these research fields. He is the author of more than 1000 scientific works, including 14 books, and has received 160 author’s certificates and patents.

Gennady E. Zaikov, DSc, is Head of the Polymer Division at the N. M. Emanuel Institute of Biochemical Physics, Russian Academy of Sciences, Moscow, Russia, and professor at Moscow State Academy of Fine Chemical Technology, Russia, as well as professor at Kazan National Research Technological University, Kazan, Russia. He is also a prolific author, researcher, and lecturer. He has received several awards for his work, including the the Russian Federation Scholarship for Outstanding Scientists. He has been a member of many professional organizations and on the editorial boards of many international science journals.