The demand for organosilicon elastomers used in the production of thermally resistant rubbers and organosilicon polymers for making non-metal composite materials is increasing from year to year.This monograph presents a discussion on the methods used for synthesizing and studying properties of newly designed organosilicon polymers, namely organosil
This monograph aims to give an overview of recent chemical and technological developments in the area of polymers and co-polymers derived from isobutylene, which have a wide range of (industrial) applications. The scientific basis for presenting the material aEURO" application of the acid-base theory with a view to the fundamental steps of isobutylene polymerization aEURO" is combined with the application of quantum-chemical calculations of catalysts, linked active centers, separate elementary stages of the process, and critical analysis of some experimental data. In addition, a number of problems, such as the macrokinetic description of isobutylene polymerization, description of the balanced scheme of industrial production of isobutylene polymers, and initiation of isobutylene polymerization with the help of immobilized cationic catalysts are discussed. Special attention is given to ecological aspects of synthesis and application of isobutylene polymers. This book will be of value and interest to researchers in the areas of chemistry and physics of high-molecular compounds, as well as engineers and technologists specialized in the area of olefins and polyolefins.
Oxidation of Organic Compounds: Medium Effects in Radical Reactions explores the role of solvents and of the composition of phase states in radical-chain processes involved in the oxidation of organic compounds. Organized into 10 chapters, this book begins with a discussion of the basic concepts relating to the mechanism involved in the oxidation of hydrocarbons and other organic compounds in liquid-phase reactions. Subsequent chapters detail some methods for studying the mechanism of oxidation reactions; role of solvation in chemical reaction kinetics; role of the medium in chain-initiation reactions; role of non-specific and specific solvation in chain-propagation and chain-termination reactions; and the role of solvation in chain-termination reactions in inhibitors. The influence of the solvent and the phase state of substances undergoing oxidation on the rates and mechanisms of individual elementary processes are also addressed. The last chapter examines the problem of the influence of the solid state of the polymer on the reactivity of radicals. This monograph will be valuable to scientific research workers, engineers, and engineering technologists specializing in the field of radical reactions and in particular in the oxidation of organic compounds.
Chemistry of the O-glycosidic Bond: Formation and Cleavage focuses on the compositions, characteristics, formation, and reactions of O-glycosidic bonds, including the synthesis of oligosaccharides and polysaccharides. The publication first offers information on the characteristics and formation of O-glycosidic bonds, as well as the Fischer, Koenigs-Knorr, orthoester, and oxazoline methods. The text also looks at the synthesis of oligosaccharides. Concerns include evaluation of methods of glycosylation from the oligosaccharide synthesis viewpoint; stepwise propagation of oligosaccharide chains; and synthesis of disaccharides and higher oligosaccharides. The manuscript analyzes the synthesis of polysaccharides, including polycondensation, cationic polymerization, and synthesis of branched polysaccharides from linear ones. The book also reviews miscellaneous glycoside synthesis and cleavage of O-glycosidic bonds. Topics include synthesis of sugar anhydrides and aryl glycosides and acid-catalyzed hydrolysis. The text is a dependable reference for readers interested in O-glycosidic bonds.
Oxidation of Organic Compounds: Medium Effects in Radical Reactions explores the role of solvents and of the composition of phase states in radical-chain processes involved in the oxidation of organic compounds. Organized into 10 chapters, this book begins with a discussion of the basic concepts relating to the mechanism involved in the oxidation of hydrocarbons and other organic compounds in liquid-phase reactions. Subsequent chapters detail some methods for studying the mechanism of oxidation reactions; role of solvation in chemical reaction kinetics; role of the medium in chain-initiation reactions; role of non-specific and specific solvation in chain-propagation and chain-termination reactions; and the role of solvation in chain-termination reactions in inhibitors. The influence of the solvent and the phase state of substances undergoing oxidation on the rates and mechanisms of individual elementary processes are also addressed. The last chapter examines the problem of the influence of the solid state of the polymer on the reactivity of radicals. This monograph will be valuable to scientific research workers, engineers, and engineering technologists specializing in the field of radical reactions and in particular in the oxidation of organic compounds.
Polymer nanocomposites continue to receive widespread acclaim for their potential to improve composite materials beyond the use of conventional macroscale fillers. Nanofillers in nanocomposites are used in a broad range of applications because their ease of processing, low price and a combination of advantageous properties. In the last decade, nanofiller particles have prompted much attention and become a developing field in nanocomposites. The main objective of this book is to show how a particle size at the nano scale offers a large surface area and good dispersion behaviour. Detailed information is provided to show that the use of nanofillers is very promising for improving the physical properties more effectively than conventional types of fillers. This book provides up-to-date information on recent advances in various aspects of modern composites reinforced by nanofillers, including their fabrication and engineering properties. The change in such properties can be related to the subsequent conformational changes, but there is controversy about the conformational behaviour of polymer chains when perturbed by nanoparticles. To accomplish these tasks, this book focuses on the behaviour of nanoparticles in both morphology control and reinforcement.
Chemistry of the O-glycosidic Bond: Formation and Cleavage focuses on the compositions, characteristics, formation, and reactions of O-glycosidic bonds, including the synthesis of oligosaccharides and polysaccharides. The publication first offers information on the characteristics and formation of O-glycosidic bonds, as well as the Fischer, Koenigs-Knorr, orthoester, and oxazoline methods. The text also looks at the synthesis of oligosaccharides. Concerns include evaluation of methods of glycosylation from the oligosaccharide synthesis viewpoint; stepwise propagation of oligosaccharide chains; and synthesis of disaccharides and higher oligosaccharides. The manuscript analyzes the synthesis of polysaccharides, including polycondensation, cationic polymerization, and synthesis of branched polysaccharides from linear ones. The book also reviews miscellaneous glycoside synthesis and cleavage of O-glycosidic bonds. Topics include synthesis of sugar anhydrides and aryl glycosides and acid-catalyzed hydrolysis. The text is a dependable reference for readers interested in O-glycosidic bonds.
Nanofibres are defined as fibres with diameters on the order of 100 nanometres. They can be produced by interfacial polymerisation and electrospinning. Nanofibres are included in garments, insulation and in energy storage. They are also used in medical applications, which include drug and gene delivery, artificial blood vessels, artificial organs and medical facemasks. This book presents some fascinating phenomena associated with the remarkable features of nanofibres in electrospinning processes and new progress in applications of electrospun nanofibres. It also provides an overview of structure-property relationships, synthesis and purification, and potential applications of electrospun nanofibres. The collection of topics in this book aims to reflect the diversity of recent advances in electrospun nanofibres with a broad perspective which may be useful for scientists as well as for graduate students and engineers.
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