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Advances in polymer nanocomposite technology   Publication : [S.l.] Nova Science Pub Inc 2010 . 445 p. , Polymer nanocomposites have revolutionised the research effort in the field of composites as they lead to the achievement of synergistic effects from the organic and inorganic components of the system and have led to the expansion of the spectrum of application of the commodity polymers to more advanced high end applications. Although a number of successful systems could be achieved, the inorganic filler still could not be optimally dispersed on nanometer scale in non polar polymers. Also, the thermal degradation of the surface modification of the inorganic component disturbs the organic inorganic phase compatibility and hence the resulting composite properties. In recent years, many new techniques have been employed to overcome these problems which include more advanced modification protocols of the inorganic filler, development of more thermally stable surface modification and altogether new synthesis technologies for polyolefin nanocomposites. There has also been a constant need to compare the composite properties with the property models and hence to be able to predict the properties of the similar systems in advance. However, until now, the conventional models developed for conventional micro composites were used, which in no way maps the nanocomposite systems. The recently developed statistical as well as finite element methods focusing the real nanocomposite morphologies have been more helpful for this purpose. Though a tremendous research focus lies on these polymer systems, there is also a need to give some attention to more environmentally friendly nanocomposite systems and to develop methods to achieve proper recycling. 26 cm. Date : 2010 Disponibilité : Exemplaires disponibles: La bibliothèque des sciences de l'ingénieur (2),
Conducting polymers with micro or nanometer structure par Wan, Meixiang. Publication : New York Springer 2008 . 170 p. , Conducting Polymers with Micro or Nanometer Structure describes a topic discovered by three winners of the Nobel Prize in Chemistry in 2000: Alan J. Heeger, University of California at Santa Barbara, Alan G. MacDiarmid at the University of Pennsylvania, and Hideki Shirakawa at the University of Tsukuba. Since then, the unique properties of conducting polymers have led to promising applications in functional materials and technologies. The book first briefly summarizes the main concepts of conducting polymers before introducing micro/nanostructured conducting polymers dealing with their synthesis, structural characterizations, formation mechanisms, physical and chemical properties, and potential applications in nanomaterials and nanotechnology. The book is intended for researchers in the related fields of chemistry, physics, materials, nanomaterials and nanodevices. Meixiang Wan is a professor at the Institute of Chemistry, Chinese Academy of Sciences, Beijing. 25 cm. Date : 2008 Disponibilité : Exemplaires disponibles: La bibliothèque des Sciences Exactes et Naturelles (1),

Fundamentals of latex film formation processes and properties par Keddie,, Joseph. Publication : [S.l.] Springer 2010 . 250 p. , This book introduces the reader to latex, which is a colloidal dispersion of polymer particles in water, and explains how useful products are made from it. The primary focus is the process by which wet latex can be transformed into coatings, adhesives, and composites in the process known as film formation. The book reviews the main experimental techniques used to study the film formation process. It then presents the fundamental concepts for each of the three main stages of the process: evaporation of water, particle deformation, and polymer diffusion. The latest experimental observations are presented along with theoretical descriptions and models. Later chapters consider the effects of surfactant on film properties and describe films made from nanocomposite particles and from blends of latex with nanoparticles, such as clays or carbon nanotubes. The book concludes with a chapter considering the remaining technical challenges and highlighting a few exciting future directions. Throughout the presentation, fundamental concepts are emphasised. Relevant models are explained in an accessible way that does not assume prior knowledge. This book will serve as a state-of-the art reference for scientists working in industrial R&D and also for researchers in diverse academic subjects, including chemistry, physics, engineering, and materials science. 24 cm. Date : 2010 Disponibilité : Exemplaires disponibles: La bibliothèque des Sciences Exactes et Naturelles (1),

Double-Gyroid-Structured Functional Materials Synthesis and Applications / par Scherer, Maik Rudolf Johann. Publication : . XXI, 198 p. Disponibilité :  http://dx.doi.org/10.1007/978-3-319-00354-2,

Light-Sensitive Polymeric Nanoparticles Based on Photo-Cleavable Chromophores par Klinger, Daniel. Publication : . XVII, 224 p. Disponibilité :  http://dx.doi.org/10.1007/978-3-319-00446-4,

Electrohydrodynamic Patterning of Functional Materials par Oppenheimer, Pola Goldberg. Publication : . XVIII, 137 p. Disponibilité :  http://dx.doi.org/10.1007/978-3-319-00783-0,

Silicon Containing Copolymers par Amiri, Sahar. Publication : . X, 53 p. 38 illus., 17 illus. in color. Disponibilité :  http://dx.doi.org/10.1007/978-3-319-09225-6,

Bio-inspired Asymmetric Design and Building of Biomimetic Smart Single Nanochannels par Hou, Xu. Publication : . XIII, 127 p. 78 illus., 67 illus. in color. Disponibilité :  http://dx.doi.org/10.1007/978-3-642-38050-1,

Smart Biomaterials par Ebara, Mitsuhiro. Publication : . X, 373 p. 118 illus., 107 illus. in color. Disponibilité :  http://dx.doi.org/10.1007/978-4-431-54400-5,

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