Описание: These books, with of a total of 40 chapters, are a comprehensive and complete introductory text on the synthesis, characterization, and applications of nanomaterials. They are aimed at graduate students and researchers whose background is chemistry, physics, materials science, chemical engineering, electrical engineering, and biomedical science. The first part emphasizes the chemical and physical approaches used for synthesis of nanomaterials. The second part emphasizes the techniques used for characterizing the structure and properties of nanomaterials, aiming at describing the physical mechanism, data interpretation, and detailed applications of the techniques. The final part focuses on systems of different nanostructural materials with novel properties and applications.
Design and Applications of Nanostructured Polymer Blend and Nanocomposite Systems offers readers an intelligent, thorough introduction to the design and applications of this new generation of designer polymers with customized properties. The book assembles and covers, in a unified way, the state-of-the-art developments of this less explored type of material.
With a focus on nanostructured polymer blends, the book discusses the science of nanostructure formation and the potential performance benefits of nanostructured polymer blends and composites for applications across many sectors: electronics, coatings, adhesives, energy (photovoltaics), aerospace, automotive, and medical devices (biocompatible polymers). The book also describes the design, morphology, and structure of nanostructured polymer composites and blends to achieve specific properties.
Автор: Baowan, Duangkamon Название: Modelling and Mechanics of Carbon-based Nanostructured Materials ISBN: 0128124636 ISBN-13(EAN): 9780128124635 Издательство: Elsevier Science Рейтинг: Цена: 13980.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание:
Modelling and Mechanics of Carbon-based Nanostructured Materials sets out the principles of applied mathematical modeling in the topical area of nanotechnology. It is purposely designed to be self-contained, giving readers all the necessary modeling principles required for working with nanostructures.
The unique physical properties observed at the nanoscale are often counterintuitive, sometimes astounding researchers and thus driving numerous investigations into their special properties and potential applications. Typically, existing research has been conducted through experimental studies and molecular dynamics simulations. This book goes beyond that to provide new avenues for study and review.
Автор: Swain, Sarat Kumar Название: Nanostructured Polymer Composites for Biomedical Applications ISBN: 0128167718 ISBN-13(EAN): 9780128167717 Издательство: Elsevier Science Рейтинг: Цена: 26107.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание:
Nanostructured polymer composites are the combination of polymers and inorganic / organic fillers at the nanometer scale. This includes synthetic and natural polymeric structured, but are not limited to, polysaccharides, aliphatic polyesters, polypeptides and proteins, and polynucleic acids; fillers include nano oxides, carbide and nitride of metals, clays, hydroxyapatite, LDH and metal nanoparticles. The interaction between filler components of nanostructured polymer composite at the nanometer scale enables them to act as molecular bridges in the polymer matrix. This is the basis for enhanced mechanical properties of nanocomposite, compared to conventional microcomposites. The uses of these nanocomposites in biomedicine is the focus of this book.
Nanostructured Polymer Composites for Biomedical Applications addresses one of the most promising, but also most difficult, challenges that researchers face: the creation of nanostructured polymer composites that have not only superior performance and mechanical properties but also have acceptable biological function. This book discusses current efforts to meet this challenge. A variety of polymeric bio-nanocomposite materials are generated by the combination of different inorganic nanoparticles with synthetic or natural polymers.
The multidisciplinary nature of nanostructured polymer composite biomaterials brings together researchers from various fields, including materials science, polymer science, biomedical engineering and biomedicine. Such collaborative work often leads to the generation of new terminology and definitions that are used across the individual disciplines. This book will help researchers and engineers in all these fields to develop new products and devices for use in effective medical treatment.
Summarizes the most recent strategies to develop nanostructured polymer composite biomaterials for biomedicine
Outlines the major preparation and characterization techniques for a range of polymer nanocomposites used in biomedicine
Explores the design of new types of nanostructured polymer composites for applications in drug delivery, tissue engineering, gene therapy and bone replacement
Автор: Albano Cavaleiro; Jeff T. de Hosson Название: Nanostructured Coatings ISBN: 1441920641 ISBN-13(EAN): 9781441920645 Издательство: Springer Рейтинг: Цена: 22201.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: This book delivers practical insight into a broad range of fields related to hard coatings, from their deposition and characterization up to the hardening and deformation mechanisms allowing the interpretation of results.
Описание: This volume contains the proceedings of the IUTAM Symposium on Mechanical Behavior and Micro-mechanics of Nanostructured Materials, held in Beijing on June 27-30, 2005. The proceedings consist of approximately 30 presentations. Nano-scale, micro-scale, theoretical, experimental and numerical aspects of the subjects are covered.
Автор: Angel Yanguas-Gil Название: Growth and Transport in Nanostructured Materials ISBN: 3319246704 ISBN-13(EAN): 9783319246703 Издательство: Springer Рейтинг: Цена: 7685.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: This book will address the application of gas phase thin film methods, including techniques such as evaporation, sputtering, CVD, and ALD to the synthesis of materials on nanostructured and high aspect-ratio high surface area materials. We have chosen to introduce these topics and the different application fields from a chronological perspective: we start with the early concepts of step coverage and later conformality in semiconductor manufacturing, and how later on the range of application branched out to include others such as energy storage, catalysis, and more broadly nanomaterials synthesis. The book will describe the ballistic and continuum descriptions of gas transport on nanostructured materials and then will move on to incorporate the impact of precursor-surface interaction. We will finally conclude approaching the subjects of feature shape evolution and the connection between nano and reactor scales and will briefly present different advanced algorithms that can be used to effectively compute particle transport, in some cases borrowing from other disciplines such as radiative heat transfer. The book gathers in a single place information scattered over thirty years of scientific research, including the most recent results in the field of Atomic Layer Deposition. Besides a mathematical description of the fundamentals of thin film growth in nanostructured materials, it includes analytic expressions and plots that can be used to predict the growth using gas phase synthesis methods in a number of ideal approximations. The focus on the fundamental aspects over particular processes will broaden the appeal and the shelf lifetime of this book. The reader of this book will gain a thorough understanding on the coating of high surface area and nanostructured materials using gas phase thin film deposition methods, including the limitations of each technique. Those coming from the theoretical side will gain the knowledge required to model the growth process, while those readers more interested in the process development will gain the theoretical understanding will be useful for process optimization.
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