New Smart Materials via Metal Mediated Macromolecular Engineering (NATO Science for Peace and Security Series A: Chemistry and Biology)
ISBN-13:
9789048132768
ISBN-10:
9048132762
Edition:
2009
Author:
Ezat Khosravi, Yusuf Yagci, Yuri Savelyev
Publication date:
2009
Publisher:
Springer
Format:
Hardcover
432 pages
FREE US shipping
Book details
ISBN-13:
9789048132768
ISBN-10:
9048132762
Edition:
2009
Author:
Ezat Khosravi, Yusuf Yagci, Yuri Savelyev
Publication date:
2009
Publisher:
Springer
Format:
Hardcover
432 pages
Summary
New Smart Materials via Metal Mediated Macromolecular Engineering (NATO Science for Peace and Security Series A: Chemistry and Biology) (ISBN-13: 9789048132768 and ISBN-10: 9048132762), written by authors
Ezat Khosravi, Yusuf Yagci, Yuri Savelyev, was published by Springer in 2009.
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Description
Control over macromolecular architecture and resulting material properties has been a central goal of polymer chemistry. There has been much interest in developing new synthetic routes to prepare smart materials with novel compositions and topologies for various applications. The considerable progress in the metal mediated macromolecular engineering over the past decade has had a major impact on the development of well-defined macromolecular architectures and the synthesis of smart materials. Particularly, remarkable strong developments have been observed for the synthesis of smart materials via four metal mediated macromolecular engineering techniques; Anionic, ROMP, ATRP and Click Chemistry. These materials have found uses in advanced microelectronics, technical and biomedical applications as well as in chemical sensors applications. This book is comprised of 27 chapters written by leading scientists from NATO and Partner Countries who have greatly contributed in the area of Anionic, ROMP, ATRP and Click Chemistry. It highlights the fundamental aspects and recent developments of these four powerful techniques and evaluate their potential in the syntheses of smart materials from complex structures (grafts, brushes, dendrimers, etc.) to nanostructures (self-assembly, nano-size, etc) for a wide range of applications. The book reports on the synthesis of a wide range of well-defined complex polymeric systems such as thermoresponsive smart polymers, star copolymers, biocompatible polymers, amphipilic smart nano structured, conducting polymers, self assembled polymers, and hyperbranced polymers.
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