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New smart materials via metal mediated macromolecular engineering   Publication : [S.l.] Springer 2009 . 418 p. , 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. 24 cm. Date : 2009 Disponibilité : Exemplaires disponibles: La bibliothèque des sciences de l'ingénieur (1),
Smart hydrogel modelling par Li,, Hua. Publication : [S.l.] Springer 2009 . 369 p. , This is the first monograph of its kind, where a comprehensive and systematic description of modeling and simulation of the smart polymer hydrogels in BioMEMS environment is provided. It will cover the development of the models in form of nonlinear coupled partial differential governing equations for the smart hydrogels. Further, benchmark results, for simulation and prediction of responsive behaviour of the smart hydrogels to solution pH, externally applied electric voltage, environmental temperature, glucose/carbohydrates and salt concentration/ionic strength that are basic stimuli in common BioMEMS devices, are also documented. Finally, it is written in as simple a manner as possible, such that it will make informative and easy reading for the expert, and concurrently it can serve as a rich reference source for a graduate student intending to work in this area. 25 cm. Date : 2009 Disponibilité : Exemplaires disponibles: La bibliothèque des Sciences Exactes et Naturelles (1),

Smart materials for energy, communications and security   Publication : Dordrecht Springer 2008 . 275 p. , This volume is a result of the NATO Advanced Research Workshop on Smart Materials for Energy, Communications and Security held in Marrakech, Morocco, December 2007 in frame of the NATO - Science for Peace program. Its objective is to overview several hot topics of materials physics related with technological problems of modern society with the focus of their implementation in Mediterranean Dialogue countries: Algeria, Egypt, Mauritania, Morocco and Tunisia. The articles are written by world famous experts in materials science and engineering. They review the state of art, recent achievements, possible and already implemented applications in the following fields of materials science: Materials for transmission, treatment and storage of information, multiferroic, magnetic and superconducting materials for spintronics, electrochromic and nitride-based semiconducting materials for infrared and optoelectronic devices, carbon-based terahertz electronic technologies, memory-capacious materials. Energy storage materials and photovoltaic cells Piezo and Electroactive materials for detectors, acoustic transducers and gas sensors. Functional materials for electronics, environmental security, measurement and characterisation techniques. 24 cm. Date : 2008 Disponibilité : Exemplaires disponibles: La bibliothèque des sciences de l'ingénieur (1),
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