Inorganic Organic Hybrid Nanocomposite Coating Applications PDF Download

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Inorganic/organic Hybrid Nanocomposite Coating Applications

Inorganic/organic Hybrid Nanocomposite Coating Applications
Author: Tsehaye Eyassu
Publisher:
Total Pages: 207
Release: 2014
Genre: Coating processes
ISBN: 9781321549768

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Nanotechnology applications in coatings have shown significant growth in recent years. Systematic incorporation of nano-sized inorganic materials into polymer coating enhances optical, electrical, thermal and mechanical properties significantly. The present dissertation will focus on formulation, characterization and evaluation of inorganic/organic hybrid nanocomposite coatings for heat dissipation, corrosion inhibition and ultraviolet (UV) and near infrared (NIR) cut applications. In addition, the dissertation will cover synthesis, characterization and dispersion of functional inorganic fillers.


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
Total Pages: 237
Release: 2019-10-25
Genre: Technology & Engineering
ISBN: 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.


Hybrid Nanocomposites for Nanotechnology

Hybrid Nanocomposites for Nanotechnology
Author: Lhadi Merhari
Publisher: Springer Science & Business Media
Total Pages: 840
Release: 2009-03-03
Genre: Technology & Engineering
ISBN: 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.


Hydrophobic and Superhydrophobic Organic‐Inorganic Nano‐Hybrids

Hydrophobic and Superhydrophobic Organic‐Inorganic Nano‐Hybrids
Author: Chang-Sik Ha
Publisher: CRC Press
Total Pages: 182
Release: 2018-03-22
Genre: Science
ISBN: 1351206060

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In materials chemistry, hybrid systems have become popular because of their enhanced properties compared to their individual components. Organic-inorganic hybrid materials have dual, enhanced chemical, thermal, and mechanical properties of both organic and inorganic materials in a single material and are used in various applications. An enhanced hybrid material has many technical advantages compared to single organic or inorganic materials. These technical advantages and the applications of organic-inorganic hybrid materials have been covered by several scientific papers, reviews, and books. This book, however, exclusively covers hydrophobic and superhydrophobic surfaces based on organic-inorganic nanohybrids, their synthesis and fabrication, and their recent and potential applications in various fields. The book is a good reference for understanding the surface properties of organic-inorganic nanohybrids and also a valuable guide for college/high school, undergraduate, and graduate students and scientists with a background in chemistry, chemical engineering, materials science and engineering, nanotechnology, surface science and engineering, or industrial coatings.


Polymer Nanocomposite Coatings

Polymer Nanocomposite Coatings
Author: Vikas Mittal
Publisher: CRC Press
Total Pages: 358
Release: 2016-04-19
Genre: Technology & Engineering
ISBN: 100068721X

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This work explores the use of composite nanotechnology for thin coatings on various substrates. It compiles recent advances in nanocomposite coatings for experienced researchers and provides background information for those new to the field. The book not only explains the synthesis of bulk nanocomposite materials, it describes their application in


Silica-based Organic-inorganic Hybrid Nanomaterials: Synthesis, Functionalization And Applications In The Field Of Catalysis

Silica-based Organic-inorganic Hybrid Nanomaterials: Synthesis, Functionalization And Applications In The Field Of Catalysis
Author: Rakesh Kumar Sharma
Publisher: World Scientific
Total Pages: 277
Release: 2019-11-05
Genre: Science
ISBN: 1786347482

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Currently the field of nanocatalysis is undergoing many exciting developments and the design of silica-based organic-inorganic hybrid nanocatalysts is a key focus of the researchers working in this field.This book aims to present a succinct overview of the recent research progress directed towards the fabrication of silica-based organic-inorganic hybrid catalytic systems encompassing the key advantages of silica nanoparticles and silica-coated magnetic nanoparticles in an integrated manner. Featuring comprehensive descriptions of almost all approaches utilized for the synthesis of nanomaterials including some latest techniques such as flow and microwave-assisted synthesis that enable large-scale synthesis, it proves useful not only to academics but also industrialists. It also includes a systematic discussion on the vital characterization techniques employed for authenticating the structure of these.The title also offers an enormous amount of knowledge about the fusion of nanotechnology with green chemistry that strives to meet the scientific challenges of protecting human health and the environment.


Polymers Coatings

Polymers Coatings
Author: Inamuddin
Publisher: John Wiley & Sons
Total Pages: 480
Release: 2020-05-27
Genre: Technology & Engineering
ISBN: 1119654998

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The explores the cutting-edge technology of polymer coatings. It discusses fundamentals, fabrication strategies, characterization techniques, and allied applications in fields such as corrosion, food, pharmaceutical, biomedical systems and electronics. It also discusses a few new innovative self-healing, antimicrobial and superhydrophobic polymer coatings. Current industrial applications and possible potential activities are also discussed.


Multifunctional Nanocomposites in Coating Technology

Multifunctional Nanocomposites in Coating Technology
Author: Sudeshna Chakraborty
Publisher:
Total Pages: 241
Release: 2018
Genre: Chemistry
ISBN: 9780438854642

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Application of Nanomaterials using nanotechnology has gained significant attention in the coating industry in recent years. Their application has had a great impact, particularly in the 3C industries (computer, communication, and construction). Incorporation of nanomaterials into polymer carriers through a systematic approach to coating processes can enhance various physical properties, such as mechanical, optical, electrical and thermal properties. The current dissertation focused on the synthesis and characterization of new nanomaterials like mesoporous silica or nanocomposites like copper-doped zinc oxide that can be used in the coating to study thermal cooling performance and enhancement of thermal conductivity. New thermal devices will be built using several ASTM processes to observe molecular fan effect on heat sinks. In addition to those, this dissertation covers the new formulation technique using inorganic/organic hybrid nanocomposite coatings for multi-functional purposes, such as heat dissipation, corrosion inhibition, and semiconductor applications. In the first project, we developed a thin inorganic/organic hybrid nanocomposite coating to study corrosion inhibition performance on metal alloys. In this project, we employed an in-situ phosphatization technique for corrosion protection and a 'Molecular Fan' technique to dissipate heat from metal alloys like aluminum/zinc/magnesium. Salt-Fog testing results show we can achieve good protection up to 722 hours. Our goal is to reach 1000 hours. The effect of using ISPR, nanomaterials, pigments etc. is discussed in this project. In the second project, we made polymer formulations composed of carbon-based nanomaterials exhibiting the Molecular Fan effect. In the first part, we studied its effect on heat sinks using an existing cooling device. In the second part, we designed, developed and built a new thermal device to study the Molecular Fan effect and compared and contrasted it with the existing one. We also tested its application on communication devices such as a cell phone. In the third project, we synthesized and studied a new type of nanomaterials 'Copper-doped Zinc Oxide' in two ways by the 'solvo-thermal' method and the 'precipitation' method. We discuss each process and its results in detail. We characterized the newly developed materials, studied their properties, and developed emulsion coating formulation and measured thermal performance. In the future, we propose to investigate the mechanical properties, optical properties such as photoluminescence of ZnO, and to find the best way for the possible application (photocatalyst). In the fourth project, we synthesized and characterized porous nanomaterials 'Mesoporous Silica' through an investigation of its physical properties. We formulated nanocoating using silica-based nanocomposite and studied its thermal performance.


Eco-Friendly Nano-Hybrid Materials for Advanced Engineering Applications

Eco-Friendly Nano-Hybrid Materials for Advanced Engineering Applications
Author: S. Ananda Kumar
Publisher: CRC Press
Total Pages: 436
Release: 2017-03-27
Genre: Science
ISBN: 1771882956

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This new book focuses on eco-friendly nanohybrid. It clearly summarizes the fundamentals and established techniques of synthesis and processing of eco-friendly nanohybrid materials to provide a systematic and coherent picture of synthesis and the processing of nanomaterials. The research on nanotechnology is evolving and expanding very rapidly. Nanotechnology represents an emerging technology that has the potential to have an impact on an incredibly wide number of industries, such as the medical, environmental, and pharmaceutical industries. There is a growing need to develop environmentally friendly processes for corrosion control that do not employ toxic chemicals. This book helps to fill this need. This volume is a comprehensive compilation of several trending research topics, such as fouling, energy-storing devices, water treatment, corrosion, biomaterials, and high performance materials. The topics are approached in an encompassing manner, covering the basics and the recent trends in this area, clearly defining the problems and suggesting potential solutions. Topics in the book include: Synthesis of complex polymer intermediates Synthesis of nanoparticles and nanofibers Binding interaction between nano- and micromaterials Fabrication of polymer nanocomposites Making of functionally terminated nanohybrid coatings Development of corrosion resistant coatings Antifouling coatings Bioceramic materials Materials for therapeutic and aesthetic applications Eco-Friendly Nano-Hybrid Materials for Advanced Engineering Applications will benefit a wide variety of those in this field, including: Shipping and coating industries encountering fouling problems Innovators in the field of energy storage and electrical equipment Developers of efficient water treatment systems Biomedical industries looking for novel bio-compatible materials Industries seeking high performance epoxy-based materials needed for specific applications