Diverse Applications of Organic-Inorganic Nanocomposites: Emerging Research and Opportunities

Diverse Applications of Organic-Inorganic Nanocomposites: Emerging Research and Opportunities

Author: Clarizia, Gabriele

Publisher: IGI Global

Published: 2019-10-25

Total Pages: 237

ISBN-13: 1799815323

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Nanocomposite materials are multiphase materials where the interactions between the different components are enhanced by their intimate contact. Indeed, this emerging class of innovative materials guarantees excellent macroscopic properties by taking advantage of the peculiar characteristics that nanometer-sized fillers give to a suitable matrix compared to those obtainable with the same fillers at micrometric dimensions. These innovative materials improve and extend the range of desirable properties. Diverse Applications of Organic-Inorganic Nanocomposites: Emerging Research and Opportunities s a pivotal reference source that provides vital research on the application of organic-inorganic nanocomposite materials within various professional disciplines and in different human activities. While highlighting topics such as photocatalysis, atomistic modeling, and membrane separation, this publication explores the strengths and weaknesses of nanocomposites as well as future concepts and devices. This book is ideally designed for chemists, biologists, engineers, researchers, government professionals, academicians, and postgraduate students.


Optically Induced Nanostructures

Optically Induced Nanostructures

Author: Karsten König

Publisher: Walter de Gruyter GmbH & Co KG

Published: 2015-05-19

Total Pages: 360

ISBN-13: 3110383500

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Nanostructuring of materials is a task at the heart of many modern disciplines in mechanical engineering, as well as optics, electronics, and the life sciences. This book includes an introduction to the relevant nonlinear optical processes associated with very short laser pulses for the generation of structures far below the classical optical diffraction limit of about 200 nanometers as well as coverage of state-of-the-art technical and biomedical applications. These applications include silicon and glass wafer processing, production of nanowires, laser transfection and cell reprogramming, optical cleaning, surface treatments of implants, nanowires, 3D nanoprinting, STED lithography, friction modification, and integrated optics. The book highlights also the use of modern femtosecond laser microscopes and nanoscopes as novel nanoprocessing tools.


Hybrid Nanocomposites for Nanotechnology

Hybrid Nanocomposites for Nanotechnology

Author: Lhadi Merhari

Publisher: Springer Science & Business Media

Published: 2009-03-03

Total Pages: 840

ISBN-13: 0387304282

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This book covers the latest advances in polymer-inorganic nanocomposites, with particular focus on high-added-value applications in fields including electronics, optics, magnetism and biotechnology. The unique focus of this book is on electronic, optical, magnetic and biomedical applications of hybrid nanocomposites. Coverage includes: Synthesis methods and issues and production scale-up; Characterization methods; Electronic applications; Optical applications and Photonics; Magnetic applications; and Biomedical applications. The book offers readers a solid grasp of the state of the art, and of current challenges in non-traditional applications of hybrid nanocomposites.


Nanocomposites for Photonic and Electronic Applications

Nanocomposites for Photonic and Electronic Applications

Author: Luciana Reyes Pires Kassab

Publisher: Elsevier

Published: 2019-11-06

Total Pages: 296

ISBN-13: 0128183977

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Nanocomposites for Photonic and Electronic Applications addresses a range of aspects of different nanocomposites and their possible applications to illustrate the techniques used to prepare and characterize them. In addition, the book discusses possible optical, electronic, biophotonic, photonic and renewable energy applications, presenting a panorama of current research in the field of nanostructures for photonic applications. This is an important reference source for academics and industry engineers who are looking to learn more about how nanocomposites can be used to make cheaper, more efficient products in the electronic and photonic fields. Explores the use of different types of amorphous and crystalline nanocomposites based on fluorides, tellurite, borates and lasers Discusses the applications of nanocomposites for photonics, biophotonics and renewable energy applications Assesses the advantages and disadvantages of using different types of nanocomposite in the design of different electronic and photonic products


Sol-Gel Technologies for Glass Producers and Users

Sol-Gel Technologies for Glass Producers and Users

Author: Michel Andre Aegerter

Publisher: Springer Science & Business Media

Published: 2013-03-19

Total Pages: 474

ISBN-13: 0387889531

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Sol-Gel Techniques for Glass Producers and Users provides technological information, descriptions and characterizations of prototypes, or products already on the market, and illustrates advantages and disadvantages of the sol-gel process in comparison to other methods. The first chapter entitled "Wet Chemical Technology" gives a summary of the basic principles of the sol-gel chemistry. The most promising applications are related to coatings. Chapter 2 describes the various "Wet Chemical Coating Technologies" from glass cleaning to many deposition and post-coating treatment techniques. These include patterning of coatings through direct or indirect techniques which have became very important and for which the sol-gel processing is particularly well adapted. Chapter 3 entitled "Bulk Glass Technologies" reports on the preparation of special glasses for different applications. Chapter 4 entitled "Coatings and Materials Properties" describes the properties of the different coatings and the sol-gel materials, fibers and powders. The chapter also includes a section dedicated to the characterization techniques especially applied to sol-gel coatings and products.


Polymer Composites, Nanocomposites

Polymer Composites, Nanocomposites

Author: Sabu Thomas

Publisher: John Wiley & Sons

Published: 2013-04-16

Total Pages: 294

ISBN-13: 352765240X

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Polymer composites are materials in which the matrix polymer isreinforced with organic/inorganic fillers of a definite size andshape, leading to enhanced performance of the resultant composite.These materials find a wide number of applications in such diversefields as geotextiles, building, electronics, medical, packaging,and automobiles. This first systematic reference on the topic emphasizes thecharacteristics and dimension of this reinforcement. The authors are leading researchers in the field from academia,government, industry, as well as private research institutionsacross the globe, and adopt a practical approach here, coveringsuch aspects as the preparation, characterization, properties andtheory of polymer composites. The book begins by discussing the state of the art, new challenges,and opportunities of various polymer composite systems. Interfacialcharacterization of the composites is discussed in detail, as isthe macro- and micromechanics of the composites. Structure-propertyrelationships in various composite systems are explained with thehelp of theoretical models, while processing techniques for variousmacro- to nanocomposite systems and the influence of processingparameters on the properties of the composite are reviewed indetail. The characterization of microstructure, elastic,viscoelastic, static and dynamic mechanical, thermal, tribological,rheological, optical, electrical and barrier properties arehighlighted, as well as their myriad applications. Divided into three volumes: Vol. 1. Macro- and Microcomposites;Vol. 2. Nanocomposites; and Vol. 3. Biocomposites.


Integrated Optics and Micro-Optics with Polymers

Integrated Optics and Micro-Optics with Polymers

Author: Wolfgang Karthe

Publisher: Springer

Published: 1993-05

Total Pages: 354

ISBN-13:

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"The present book is the account of a workshop on Integrated Optics and Micro-Optics with Polymers held in Spring 1992 at Mainz and organized by IMM Institute of Microtechnology GmbH, the Max Planck Institute of Polymer Research, and the Institute of Applied Physics of Friedrich Schiller University at Jena."--Preface.