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by Martin Moeller,Krzysztof Matyjaszewski

Download Polymer Science: A Comprehensive Reference fb2, epub

ISBN: 0444533494
Author: Martin Moeller,Krzysztof Matyjaszewski
Language: English
Publisher: Elsevier Science; 1 edition (July 26, 2012)
Pages: 7760
Category: Engineering
Subcategory: Engineering
Rating: 4.9
Votes: 541
Size Fb2: 1127 kb
Size ePub: 1816 kb
Size Djvu: 1666 kb
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Print Book & E-Book. The progress in polymer science is revealed in the chapters of Polymer Science: A Comprehensive Reference.

Print Book & E-Book. ISBN 9780444533494, 9780080878621. Hardcover ISBN: 9780444533494. eBook ISBN: 9780080878621. In Volume 1, this is reflected in the improved understanding of the properties of polymers in solution, in bulk and in confined situations such as in thin films. Volume 2 addresses new characterization techniques, such as high resolution optical microscopy, scanning probe microscopy and other procedures for surface and interface characterization.

The 13-digit and 10-digit formats both work.

ISBN-13: 978-0444533494. The 13-digit and 10-digit formats both work. Common to all approaches in Polymer Science: A Comprehensive Reference is mastering an increasing complexity of the polymer materials structure needed for a change in focus from commodities to materials for various advanced applications, related to energy, environment, and biomedicine.

Polymer Science: A Comprehensive Reference (Books & other media combined). Krzysztof Matyjaszewski is . Martin Moeller Krzysztof Matyjaszewski. Warner University Professor of Natural Sciences and director of Center for Macromolecular Engineering at Carnegie Mellon University and also Adjunct Professor at the Polish Academy of Sciences.

Polymer Science book. Goodreads helps you keep track of books you want to read. Start by marking Polymer Science: A Comprehensive Reference as Want to Read: Want to Read savin. ant to Read. Read by Krzysztof Matyjaszewski. See a Problem? We’d love your help.

by Martin Moeller, Krzysztof Matyjaszewski.

The progress in polymer science is revealed in the chapters of Polymer Science: A Comprehensive Reference by Martin Moeller, Krzysztof Matyjaszewski.

New Trends in Polymer Science-MACROMEX 2011", Krzysztof Matyjaszewski, Angel Licea-Claverie, Enrique Saldívar-Guerra, Kenneth J. Wynne.

2012; ISBN: 978-0-8412-2699-9. New Trends in Polymer Science-MACROMEX 2011", Krzysztof Matyjaszewski, Angel Licea-Claverie, Enrique Saldívar-Guerra, Kenneth J.

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Polymer science: a comprehensive reference polymer . His papers have been cited more than 50 000 times. Krzysztof Matyjaszewski Martin Möller FOREWORD Polymer science has experienced a most impressive expansion in depth, breadth, and diversity through developments in its core domains as well as at the interfaces of polymer chemistry and physics with materials science, supramolecular chemistry, nanoscience, biophysics, and biology.

Krzysztof "Kris" Matyjaszewski (Polish: ; born April 8, 1950) is a Polish-American chemist. Warner Professor of the Natural Sciences at the Carnegie Mellon University Matyjaszewski is best known for the discovery of atom transfer radical polymerization (ATRP), a novel method of polymer synthesis that has revolutionized the way macromolecules are made. In 2011 he was a co-winner of the prestigious Wolf Prize in Chemistry.

The progress in polymer science is revealed in the chapters of Polymer Science: A Comprehensive Reference. In Volume 1, this is reflected in the improved understanding of the properties of polymers in solution, in bulk and in confined situations such as in thin films. Volume 2 addresses new characterization techniques, such as high resolution optical microscopy, scanning probe microscopy and other procedures for surface and interface characterization. Volume 3 presents the great progress achieved in precise synthetic polymerization techniques for vinyl monomers to control macromolecular architecture: the development of metallocene and post-metallocene catalysis for olefin polymerization, new ionic polymerization procedures, and atom transfer radical polymerization, nitroxide mediated polymerization, and reversible addition-fragmentation chain transfer systems as the most often used controlled/living radical polymerization methods. Volume 4 is devoted to kinetics, mechanisms and applications of ring opening polymerization of heterocyclic monomers and cycloolefins (ROMP), as well as to various less common polymerization techniques. Polycondensation and non-chain polymerizations, including dendrimer synthesis and various "click" procedures, are covered in Volume 5. Volume 6 focuses on several aspects of controlled macromolecular architectures and soft nano-objects including hybrids and bioconjugates. Many of the achievements would have not been possible without new characterization techniques like AFM that allowed direct imaging of single molecules and nano-objects with a precision available only recently. An entirely new aspect in polymer science is based on the combination of bottom-up methods such as polymer synthesis and molecularly programmed self-assembly with top-down structuring such as lithography and surface templating, as presented in Volume 7. It encompasses polymer and nanoparticle assembly in bulk and under confined conditions or influenced by an external field, including thin films, inorganic-organic hybrids, or nanofibers. Volume 8 expands these concepts focusing on applications in advanced technologies, e.g. in electronic industry and centers on combination with top down approach and functional properties like conductivity. Another type of functionality that is of rapidly increasing importance in polymer science is introduced in volume 9. It deals with various aspects of polymers in biology and medicine, including the response of living cells and tissue to the contact with biofunctional particles and surfaces. The last volume is devoted to the scope and potential provided by environmentally benign and green polymers, as well as energy-related polymers. They discuss new technologies needed for a sustainable economy in our world of limited resources.Provides broad and in-depth coverage of all aspects of polymer science from synthesis/polymerization, properties, and characterization methods and techniques to nanostructures, sustainability and energy, and biomedical uses of polymersProvides a definitive source for those entering or researching in this area by integrating the multidisciplinary aspects of the science into one unique, up-to-date reference workElectronic version has complete cross-referencing and multi-media componentsVolume editors are world experts in their field (including a Nobel Prize winner)

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