Synthesis And Charaterization Of Well Defined Polymer Inorganic Nanocomposites PDF Download

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Nanocomposites

Nanocomposites
Author: Xiaoying Wang
Publisher: Nova Science Publishers
Total Pages: 0
Release: 2014-02-04
Genre: Nanocomposites (Materials).
ISBN: 9781629482262

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The intention of this book is to provide an updated view of the synthesis, characterisation and applications of different kinds of nanocomposites. It includes 9 review chapters and 8 research chapters. The review articles introduce various nanocomposites like polymer-based nanocomposite (polymer-based carbonaceous nanocomposites, chitosan-quantum dots nanocomposites and chitosan-based inorganic nanocomposites), UV-cured nanocomposite coatings, carbon dots nanocomposites, layered double hydroxides/organo nanocomposites, catalytic membranes loaded with nanocomposite materials and block copolymer nanocomposites. The research articles include studies on the influence of silica nanoparticles on functional properties of polyurethane nanocomposites, the annealing effects in nanostructured carbon-copper films, fabrication, characterisation and modelling of functionally graded synthetic graphite/polymer nanocomposites, the mass transfer process in metal-ion exchanger nanocomposites, mechanosynthesis of Fe-MeC (Me=V, Ti, Nb) nanocomposites, preparation and adsorption for Congo red of rectorite/chitosan nanocomposite, synthesis, assembly, and performance of metal-oxide based nanocomposites using polyol technique and electrospinning and also synthesis and applications of developed metal matrix/nanodiamond composites. According to this book, you can get a comprehensive understanding about the development of nanocomposites in recent years. Moreover, you can figure out detailed synthesis methods as well as advanced characterisation methods for nanocomposites. It will be an inspiration for applications of nanocomposites in various fields. By covering both the fundamentals and synthetic applications, it is therefore suitable for both new and experienced researchers, chemists, biochemists, natural product chemists and graduate students.


Nanocomposites

Nanocomposites
Author: Luigi Nicolais
Publisher: John Wiley & Sons
Total Pages: 261
Release: 2013-12-03
Genre: Science
ISBN: 1118742702

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A Step-by-step guide to the synthesis and characterization of metal-polymer nanocomposites Polymer nanocomposites, polymers that are reinforced with nano-sized particles, provide enhanced mechanical, thermal, electrical, and barrier properties. Continued research and development of new polymer nanocomposites promises to provide enhanced materials to a broad range of industries, such as plastics, aerospace, automotive, electronics, packaging, and biomedical devices. Structured as a practical laboratory manual, this book enables readers to expertly synthesize and characterize metal-polymer nanocomposites by clearly setting forth the principles and techniques. Nanocomposites: In Situ Synthesis of Polymer-Embedded Nanostructures features contributions from an international team of materials science and nanotechnology experts. Chapters reflect the authors' critical review of the literature as well as their own laboratory experience working with polymer nanocomposites. The book begins with a detailed introduction to the science, properties, and applications of metal-polymer nanocomposites. Next, it covers such topics as: Morphological and topological concepts Phase separation and nanoparticle aggregation Methods for the synthesis of nanocomposites Morphological control Characterization techniques and data analysis methods Toxicity considerations High-resolution images of metal nanoparticles, created by transmission electron microscopy, are provided throughout the book. There are also plenty of process schemes and detailed drawings, helping readers better understand how to synthesize, characterize, and use these composite materials. A bibliography at the end of each chapter provides a gateway to original research papers and reviews in the field. With its focus on the practical steps of synthesis and characterization, Nanocomposites: In Situ Synthesis of Polymer-Embedded Nanostructures is recommended for both students and practitioners in nanotechnology, polymer science, and materials science and engineering.


In-situ Synthesis of Polymer Nanocomposites

In-situ Synthesis of Polymer Nanocomposites
Author: Vikas Mittal
Publisher: John Wiley & Sons
Total Pages: 593
Release: 2011-10-05
Genre: Technology & Engineering
ISBN: 3527640118

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The book series "Polymer Nano-, Micro- and Macrocomposites" provides complete and comprehensive information on all important aspects of polymer composite research and development, including, but not limited to synthesis, filler modification, modeling, characterization as well as application and commercialization issues. Each book focuses on a particular topic and gives a balanced in-depth overview of the respective subfi eld of polymer composite science and its relation to industrial applications. With the books the readers obtain dedicated resources with information relevant to their research, thereby helping to save time and money. In-situ intercalative polymerization in the presence of filler provides distinct advantages when compared to other nanocomposite synthesis techniques including the possibility to polymerize a large range of thermoplastic and thermosetting polymers, improved handling of gaseous or liquid monomers or high pressure polymerization and improved control of heat of polymerization. This volume aims to highlight these advantages of the generation of polymer nanocomposites with a large spectrum of polymer matrices. Following an overview of the synthesis methodologies, the text goes on to discuss the most relevant polymer materials, including polyamides, polyolefi nes, polyacrylates, polyethylenes, polyurethanes, polyesters and polyepoxides.


Synthesis Techniques for Polymer Nanocomposites

Synthesis Techniques for Polymer Nanocomposites
Author: Vikas Mittal
Publisher: John Wiley & Sons
Total Pages: 317
Release: 2015-01-12
Genre: Technology & Engineering
ISBN: 3527334556

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The book series 'Polymer Nano-, Micro- and Macrocomposites' provides complete and comprehensive information on all important aspects of polymer composite research and development, including, but not limited to synthesis, filler modification, modeling, characterization as well as application and commercialization issues. Each book focuses on a particular topic and gives a balanced in-depth overview of the respective subfield of polymer composite science and its relation to industrial applications. With the books the readers obtain dedicated resources with information relevant to their research, thereby helping to save time and money. Summarizing all the most important synthesis techniques used in the lab as well as in industry, this book is comprehensive in its coverage from chemical, physical and mechanical viewpoints. This book helps readers to choose the correct synthesis route, such as suspension and miniemulsion polymerization, living polymerization, sonication, mechanical methods or the use of radiation, and so achieve the desired composite properties.


Polymer Nanocomposites for Energy Applications

Polymer Nanocomposites for Energy Applications
Author: T. Daniel Thangadurai
Publisher: John Wiley & Sons
Total Pages: 276
Release: 2022-09-13
Genre: Technology & Engineering
ISBN: 3527350489

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Polymer Nanocomposites for Energy Applications Explore the science of polymer nanocomposites and their practical use in energy applications In Polymer Nanocomposites for Energy Applications, a team of distinguished researchers delivers a comprehensive review of the synthesis and characterization of polymer nanocomposites, as well as their applications in the field of energy. Succinct and insightful, the book explores the storage of electrical, magnetic, and thermal energy and hydrogen. It also discusses energy generation by polymer-based solar cells. Finally, the authors present a life cycle analysis of polymer nanocomposites for energy applications and provide four real-world case studies where these materials have been successfully used. Readers will also find: Thorough introductions to the origins and synthesis of polymer materials In-depth discussions of the characterization of polymeric materials, including UV-visible spectroscopy Comprehensive explorations of a wide variety of polymer material applications, including in biotechnology and for soil remediation Fulsome presentations of polymer nanocomposites and their use in energy storage systems Perfect for materials and engineering scientists and polymer chemists, Polymer Nanocomposites for Energy Applications will also earn a place in the libraries of professionals working in the chemical industry.


Preparation And Characterization Of Inorganic Polymer Blend Nanocomposites

Preparation And Characterization Of Inorganic Polymer Blend Nanocomposites
Author: Dr. Miteshkumar Harishbhai Patel
Publisher: Educreation Publishing
Total Pages: 49
Release: 2019-09-12
Genre: Education
ISBN:

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This book provides essential information on how the inorganic nanoparticles affect the physical properties of polymer blend. In addition to this it can also provide platform for upcoming research student who pursue their doctorate in synthesis and characterization of inorganic-organic nanocomposites. This book cover different characterization technique that is very beneficial for new students.


Synthesis and Characterization of Smart Block Copolymers for Biomineralization and Biomedical Applications

Synthesis and Characterization of Smart Block Copolymers for Biomineralization and Biomedical Applications
Author:
Publisher:
Total Pages:
Release: 2008
Genre:
ISBN:

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Self-assembly is a powerful tool in forming structures with nanoscale dimensions. Self-assembly of macromolecules provides an efficient and rapid pathway for the formation of structures from the nanometer to micrometer range that are difficult, if not impossible to obtain by conventional lithographic techniques [1]. Depending on the morphologies obtained (size, shape, periodicity, etc.) these self-assembled systems have already been applied or shown to be useful for a number of applications in nanotechnology [2], biomineralization [3, 4], drug delivery [5, 6] and gene therapy [7]. In this respect, amphiphilic block copolymers that self-organize in solution have been found to be very versatile [1]. In recent years, polymer-micellar systems have been designed that are adaptable to their environment and able to respond in a controlled manner to external stimuli. In short, synthesis of 'nanoscale objects' that exhibit 'stimulus-responsive' properties is a topic gathering momentum, because their behavior is reminiscent of that exhibited by proteins [8]. By integrating environmentally sensitive homopolymers into amphiphilic block copolymers, smart block copolymers with self assembled supramolecular structures that exhibit stimuli or environmentally responsive properties can be obtained [1]. Several synthetic polymers are known to have environmentally responsive properties. Changes in the physical, chemical or biochemical environment of these polymers results in modulation of the solubility or chain conformation of the polymer [9]. There are many common schemes of engineering stimuli responsive properties into materials [8, 9]. Polymers exhibiting lower critical solution temperature (LCST) are soluble in solvent below a specific temperature and phase separate from solvent above that temperature while polymers exhibiting upper critical solution temperatures (UCST) phase separate below a certain temperature. The solubility of polymers with ionizable moieties depends on the pH of the solution. Polymers with polyzwitterions, anions and cations have been shown to exhibit pH responsive self assembly. Other stimuli responsive polymers include glucose sensitive polymers, calcium ion-sensitive polymers and so on. Progress in living radical polymerization (LRP) methods [10] has made it possible for the facile synthesis of these block copolymer systems with controlled molecular weights and well defined architectures. The overall theme of this work is to develop novel smart block copolymers for biomineralization and biomedical applications. Synthesis and characterization of self-assembling thermoreversible ionic block copolymers as templates in biomimetic nanocomposite synthesis using a bottom-up approach is a novel contribution in this respect. Further, we have extended these families of copolymers to include block copolymer-peptide conjugates to enhance biological specificity. Future directions on this work will focus on enhancing the polymer templating properties for biomineralization by expanding the family of block copolymers with organic polypeptides and biological polypeptide scaffolds as well as a detailed understanding of the polymer-inorganic nanocomposites at the molecular level using small angle scattering analysis. Glucose responsive polymer hydrogels for drug delivery, polymer-ligand conjugates for non-viral therapy and thermoresponsive injectable photocrosslinkable hydrogels for posttraumatic arthritis cartilage healing are other applications of these novel copolymers synthesized in our work.