Polymer Nanocomposites by Emulsion and Suspension Polymerization: Rsc,
Автор: Gerard Caneba; Yadunandan Dar Название: Emulsion-based Free-Radical Retrograde-Precipitation Polymerization ISBN: 3642447910 ISBN-13(EAN): 9783642447914 Издательство: Springer Рейтинг: Цена: 130430.00 T Наличие на складе: Есть у поставщика Поставка под заказ. Описание: This monograph is a follow-up to the first FRPPP book by Gerard Caneba. It includes additional conceptual results, implementation of the FRRPP process in emulsion media to produce various block copolymers, and other FRRPP-related supplementary topics.
Автор: D.C. Blackley Название: Emulsion Polymerization ISBN: 0853346275 ISBN-13(EAN): 9780853346272 Издательство: Springer Рейтинг: Цена: 200260.00 T Наличие на складе: Есть у поставщика Поставка под заказ.
Автор: Anjun Qin Название: Click Polymerization ISBN: 1782627162 ISBN-13(EAN): 9781782627166 Издательство: Royal Society of Chemistry Рейтинг: Цена: 223870.00 T Наличие на складе: Есть у поставщика Поставка под заказ. Описание: Click Polymerization has been edited by world renowned experts and provides an authoritative guide to this reaction type.
Автор: Mishra Vats Clark, Mishra Anuradha, Vats Tanvi Название: Microwave-Assisted Polymerization ISBN: 1782623175 ISBN-13(EAN): 9781782623175 Издательство: Royal Society of Chemistry Рейтинг: Цена: 173190.00 T Наличие на складе: Есть у поставщика Поставка под заказ. Описание: This book will be a valuable resource for polymer scientists and engineers who want to develop sustainable processes using microwave-assisted techniques.
Название: Nitroxide Mediated Polymerization: From Fundamentals to Applications in Materials Science ISBN: 1782620613 ISBN-13(EAN): 9781782620617 Издательство: Royal Society of Chemistry Рейтинг: Цена: 252030.00 T Наличие на складе: Есть у поставщика Поставка под заказ. Описание: The first book dedicated to nitroxide-mediated polymerization and covers the history and development of NMP, as well as current techniques of academic and industrial interest.
Polymer Thermodynamics: Blends, Copolymers and Reversible Polymerization describes the thermodynamic basis for miscibility as well as the mathematical models used to predict the compositional window of miscibility and construct temperature versus volume-fraction phase diagrams. The book covers the binary interaction model, the solubility parameter approach, and the entropic difference model. Using equation of state (EOS) theories, thermodynamic models, and information from physical properties, it illustrates the construction of phase envelopes.
The book presents nine EOS theories, including some that take into account molecular weight effects. Characteristic values are given in tables. It uses the binary interaction model to predict the compositional window of miscibility for copolymer/homopolymer blends and blends of copolymers and terpolymers with common monomers. It discusses Hansen fractional solubility parameter values, six phase diagram types, the role of polymer architecture in phase behavior, and the mathematical framework for multiple glass transition temperatures found in partially miscible polymer blends. The author also illustrates biomedical and commercial applications of nanocomposites, the properties of various polymer alloys, Fick's laws of diffusion and their implications during transient events, and the use of the dynamic programming method in the sequence alignment of DNA and proteins. The final chapter reviews the thermodynamics of reversible polymerization and copolymerization.
Polymer blends offer improved performance/cost ratios and the flexibility to tailor products to suit customers' needs. Exploring physical phenomena, such as phase separation, this book provides readers with methods to design polymer blends and predict the phase behavior of binary polymer blends using desktop computers.
Автор: Kobayashi Shiro, Uyama Hiroshi, Kadokawa Jun-Ichi Название: Enzymatic Polymerization Towards Green Polymer Chemistry ISBN: 9811338124 ISBN-13(EAN): 9789811338120 Издательство: Springer Рейтинг: Цена: 158380.00 T Наличие на складе: Есть у поставщика Поставка под заказ. Описание: This book comprehensively covers researches on enzymatic polymerization and related enzymatic approaches to produce well-defined polymers, which is valuable and promising for conducting green polymer chemistry. It consists of twelve chapters, including the following topics:
The three classes of enzymes, oxidoreductases, transferases and hydrolases, have been employed as catalysts for enzymatic polymerization and modification; Well-defined polysaccharides are produced by enzymatic polymerization catalyzed by hydrolases and transferases; Hydrolase-catalyzed polycondensation and ring-opening polymerization are disclosed to produce a variety of polyesters;Polyesters are synthesized by in-vivo acyltransferase catalysis produced by microorganisms; Enzymatic polymerization catalyzed by appropriate enzymes also produces polypeptides and other polymers;Poly(aromatic)s are obtained by enzymatic polymerization catalyzed by oxidoreductases and their model complexes;Such enzymes also induce oxidative polymerization of vinyl monomers; Enzymatic modification of polymers is achieved to produce functionalized polymeric materials; The enzymatic polymerization is a green process with non-toxic catalysts, high catalyst efficiency, green solvents and renewable starting materials, and minimal by-products; Moreover, renewable resources like biomass are potentially employed as a starting substrate, producing useful polymeric materials.
This book is not only educative to young polymer chemists like graduate students but also suggestive to industrial researchers, showing the importance of the future direction of polymer synthesis for maintaining a sustainable society.
This book describes strategies and mechanism of reversible deactivation radical polymerization (RDRP) to synthesize functional polymers. Several approaches such as atom transfer radical polymerization and the combination of click chemistry and RDRP are summarized. Contributors from interdisciplinary fields highlight applications in nanotechnology, self-healing materials, oil and water resistant coatings and controlled drug delivery systems.
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