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Self-Organized Morphology in Nanostructured Materials: Springer Series in Materials Science, cartea 99

Editat de Katharina Al-Shamery, Jürgen Parisi
en Limba Engleză Paperback – 23 noi 2010
In this volume, concepts of nonlinear dynamics and self-organization are applied to topics in materials sciences with emphasis on semiconductors, soft matter, and biomaterials. The questions addressed include how to compare ordering phenomena under nonequilibrium situations, usually called self-organized structures, with those arising under situations close to equilibrium via selfassembly. Analogies are pointed out, differences are characterized, and efforts made to discover common features in the mechanistic description of those phenomena. Of major importance is the question of the role of spatial and temporal order, in particular, the application of concepts developed on macroscopic and microscopic scales to structure formation occurring on nanoscales, which occupies the focus of interest on the frontiers of science.
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Specificații

ISBN-13: 9783642091711
ISBN-10: 3642091717
Pagini: 192
Ilustrații: XIII, 176 p.
Dimensiuni: 155 x 235 x 10 mm
Greutate: 0.28 kg
Ediția:Softcover reprint of hardcover 1st ed. 2008
Editura: Springer Berlin, Heidelberg
Colecția Springer
Seria Springer Series in Materials Science

Locul publicării:Berlin, Heidelberg, Germany

Public țintă

Research

Cuprins

Organic Crystalline Nanofibers.- Titanium-Based Molecular Architectures Formed by Self-Assembled Reactions.- Self-Assemblies of Organic and Inorganic Materials.- Self-Assembled Nanoparticle Rings.- Patterns of Nanodroplets: The Belousov-Zhabotinsky-Aerosol OT-Microemulsion System.- Honeycomb Carbon Networks: Preparation, Structure, and Transport.- Chemical Waves in Living Cells.

Textul de pe ultima copertă

In this volume, concepts of nonlinear dynamics and self-organization are applied to topics in materials sciences with emphasis on semiconductors, soft matter, and biomaterials. The questions addressed include how to compare ordering phenomena under nonequilibrium situations, usually called self-organized structures, with those arising under situations close to equilibrium via selfassembly. Analogies are pointed out, differences are characterized, and efforts made to discover common features in the mechanistic description of those phenomena. Of major importance is the question of the role of spatial and temporal order, in particular, the application of concepts developed on macroscopic and microscopic scales to structure formation occurring on nanoscales, which occupies the focus of interest on the frontiers of science.

Caracteristici

Comprehensive presentation of self-organized structure formation in nanomaterials Integrates nano- and microphysical effects in a unique way Valuable reference work for researchers Explains the basics to graduate students Includes supplementary material: sn.pub/extras