Описание: By 2015, nanotechnology could be a $1 trillion business, and one can hardly imagine any currently started research project that is not related to it in some way. The industry is increasingly looking for potential applications of nanotechnological developments like nanomaterials. This text is especially addressed to the needs of engineers who need to know what the special phenomena and potentials of nanomaterials to transfer the research results into new products.
Описание: `Optical Properties and Spectroscopy of Nanomaterials`.
Автор: Vajtai Название: Springer Handbook of Nanomaterials ISBN: 3642205941 ISBN-13(EAN): 9783642205941 Издательство: Springer Рейтинг: Цена: 41018 р. Наличие на складе: Поставка под заказ.
Описание: The Springer Handbook of Nanomaterials covers the description of materials which have dimension on the "nanoscale". It provides a comprehensive, accessible source of application-oriented, authoritative information by integrating knowledge from key subfields.
Описание: Fibres usually experience tensile loads whether they are used for apparel or technical structures. Their form, which is long and fine, makes them some of the strongest materials available as well as very flexible. This book provides a concise and authoritative overview of tensile behaviour of a wide range of both natural and synthetic fibres used both in textiles and high performance materials.After preliminary chapters that introduce the reader to tensile properties, failure and testing of fibres, the book is split into two parts. Part one examines tensile properties and failure of natural fibres, such as cotton, hemp, wool and silk. Part two discusses the tensile properties and failure of synthetic fibres ranging from polyamide, polyester and polyethylene fibres to carbon fibres. Many chapters also provide a general background to the fibre, including the manufacture, microstructure, factors that affect tensile properties as well as methods to improve tensile failure.With its distinguished editor and array of international contributors, Handbook of tensile properties of textile and technical fibres is an important reference for fibre scientists, textile technologists and engineers, as well as those in academia.
Автор: Murphy Название: Handbook of Biomaterial Properties ISBN: 1493933035 ISBN-13(EAN): 9781493933037 Издательство: Springer Рейтинг: Цена: 20789 р. Наличие на складе: Поставка под заказ.
Описание: This book provides tabular and text data relating to normal and diseased tissue materials and materials used in medical devices. Comprehensive and practical for students, researchers, engineers, and practicing physicians who use implants, this book considers the materials aspects of both implantable materials and natural tissues and fluids. Examples of materials and topics covered include titanium, elastomers, degradable biomaterials, composites, scaffold materials for tissue engineering, dental implants, sterilization effects on material properties, metallic alloys, and much more. Each chapter author considers the intrinsic and interactive properties of biomaterials, as well as their appropriate applications and historical contexts. Now in an updated second edition, this book also contains two new chapters on the cornea and on vocal folds, as well as updated insights, data, and citations for several chapters.
Описание: This Unique Book Provides Comprehensive Overview Of The Field Of Immunology Related To Engineered Nanomaterials Used For Biomedical Applications. It Contains Literature Review, Case Studies And Protocols. The Book Can Serve As A Source Of Information About Nanoimmunotoxicology For Both Junior Scientists And Experts In The Field. The Authors Have More Than 10 Years Of Experience With Preclinical Characterization Of Engineered Nanomaterials Used For Medical Applications, And They Share Their Experience With The Readers. In Addition, The International Team Of Experts In The Field Provides The Opinion And Share The Expertise On Individual Topics Related To Nanoparticle Physicochemical Characterization, Hematocompatibility, And Effects On The Immune Cell Function . The Second Edition Contains Updated Chapters From The First Edition Plus New Chapters Covering Areas Of Tumor Immunology, Nanoparticle Interaction With Lymphatic System, Mathematical Modeling Of Protein Corona, Utilization Of Nanoparticles For The Delivery Of Antiviral Drugs, Extensive Analysis Of Nanoparticle Anti-Inflammatory And Immunosuppressive Properties, Novel Ways Of Protecting Therapeutic Nanoparticles From The Immune Recognition, As Well As Case Studies Regarding Nanoparticle Sterilization, Complement Activation, Protein Binding And Immunotherapy Of Cancer. The Second Edition Comes In 3 Volumes. Volume 1 Is Focused On Nanoparticle Characterization, Sterility And Sterilization, Pyrogen Contamination And Depyrigenation. It Also Contains Overview Of Regulatory Guidelines, Protocols For In Vitro And In Vivo Immunotoxicity Studies, And Correlation Between In Vitro And In Vivo Immunoassays. Volume 2 Is Focused On Hematocompatibility Of Nanomaterials. It Provides Comprehensive Review And Protocols For Investigating Nanoparticle Interaction With Erythrocytes, Platelets, Endothelial Cells, Plasma Coagulation Factors And Plasma Proteins Forming So Called "Corona" Around Nanoparticles. Volume 3 Is Dedicated To Nanoparticle Interaction With And Effects On The Immune Cell Function. It Also Contains Examples Of Nanoparticle Use For Delivery Of Antiviral And Anti-Inflammatory Drugs.
Описание: This book offers a review of recent advances in the area of oxide nanomaterials. It contains contributions exposing a general view of the current knowledge of size/confinements effects and thermodynamics of oxide systems. Additional topics covered include the synthesis, characterization, and applications of nanostructured oxides as sorbents, sensors, ceramic materials, electro-chemical and photo-chemical devices and catalysts for reducing environmental pollution, transforming hydrocarbons and producing hydrogen.
Описание: Optical properties are among the most fascinating and useful properties of nanomaterials and have been extensively studied using a variety of optical spectroscopic techniques. This book provides the systematic coverage of optical properties and spectroscopic techniques of nanomaterials.
Описание: Defect Structure and Properties of Nanomaterials: Second and Extended Edition covers a wide range of nanomaterials including metals, alloys, ceramics, diamond, carbon nanotubes, and their composites. This new edition is fully revised and updated, covering important advances that have taken place in recent years. . Nanostructured materials exhibit unique mechanical and physical properties compared with their coarse-grained counterparts, therefore these materials are currently a major focus in materials science. The production methods of nanomaterials affect the lattice defect structure (vacancies, dislocations, disclinations, stacking faults, twins, and grain boundaries) that has a major influence on their mechanical and physical properties. . In this book, the production routes of nanomaterials are described in detail, and the relationships between the processing conditions and the resultant defect structure, as well as the defect-related properties (e.g. mechanical behavior, electrical resistance, diffusion, corrosion resistance, thermal stability, hydrogen storage capability, etc.) are reviewed. . In particular, new processing methods of nanomaterials are described in the chapter dealing with the manufacturing procedures of nanostructured materials. New chapters on (i) the experimental methods for the study of lattice defects, (ii) the defect structure in nanodisperse particles, and (iii) the influence of lattice defects on electrical, corrosion, and diffusion properties are included, to further enhance what has become a leading reference for engineering, physics, and materials science audiences.
Over the past two decades, the rapid development of nanochemistry and nanotechnology has allowed the synthesis of various materials and oxides in the form of nanopowders making it possible to produce new energetic compositions and nanomaterials.
This book has a bottom-up structure, from nanomaterials synthesis to the application fields. Starting from aluminum nanoparticles synthesis for fuel application, it proposes a detailed state-of-the art of the different methods of preparation of aluminum-based reactive nanomaterials. It describes the techniques developed for their characterization and, when available, a description of the fundamental mechanisms responsible for their ignition and combustion. This book also presents the possibilities and limitations of different energetic nanomaterials and related structures as well as the analysis of their chemical and thermal properties. The whole is rounded off with a look at the performances of reactive materials in terms of heat of reaction and reactivity mainly characterized as the self-sustained combustion velocity. The book ends up with a description of current reactive nanomaterials applications underlying the promising integration of aluminum-based reactive nanomaterial into micro electromechanical systems.
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