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visakh m p high performance polymers and their nanocomposites




Visakh M. P. High Performance Polymers and Their Nanocomposites Visakh M. P. High Performance Polymers and Their Nanocomposites
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Visakh M. P. High Performance Polymers and Their Nanocomposites

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21383.38 руб.
“High Performance Polymers and Their Nanocomposites” summarizes many of the recent research accomplishments in the area of high performance polymers, such as: high performance polymers-based nanocomposites, liquid crystal polymers, polyamide 4, 6, polyamideimide, polyacrylamide, polyacrylamide-based composites for different applications, polybenzimidazole, polycyclohexylene dimethyl terephthalate, polyetheretherketone, polyetherimide, polyetherketoneketone, polyethersulfone, polyphenylene sulphide, polyphenylsulfone, polyphthalamide, Polysulfone, self-reinforced polyphenylene, thermoplastic polyimide.
James Njuguna Functional and Physical Properties of Polymer Nanocomposites James Njuguna Functional and Physical Properties of Polymer Nanocomposites
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James Njuguna Functional and Physical Properties of Polymer Nanocomposites

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9446.32 руб.
The first book to extensively cover nanoparticles, this addresses some of the key issues in nanocomposites. Polymer nanocomposites (polymers reinforced with nanoparticles), are of great interest due to their remarkable mechanical, thermal, chemical properties as well as optical, electronic, and magnetic applications Potential applications include automobile body parts, high-barrier packaging materials, flame-retardants, scratch-resistant composites, and biodegradable nanocomposites Combines basic theory as well as advanced and in-depth knowledge of these properties Broad audience includes researchers in Materials Science, Physics, Polymer Chemistry, and Engineering, and those in industry
It-Meng Low, Ahmad Hakamy, Faiz Shaikh High Performance Natural Fiber-Nanoclay Reinforced Cement Nanocomposites It-Meng Low, Ahmad Hakamy, Faiz Shaikh High Performance Natural Fiber-Nanoclay Reinforced Cement Nanocomposites
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It-Meng Low, Ahmad Hakamy, Faiz Shaikh High Performance Natural Fiber-Nanoclay Reinforced Cement Nanocomposites

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9477 руб.
Книга "High Performance Natural Fiber-Nanoclay Reinforced Cement Nanocomposites".
Vijay Thakur Kumar Handbook of Composites from Renewable Materials, Nanocomposites. Advanced Applications Vijay Thakur Kumar Handbook of Composites from Renewable Materials, Nanocomposites. Advanced Applications
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Vijay Thakur Kumar Handbook of Composites from Renewable Materials, Nanocomposites. Advanced Applications

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21127.4 руб.
The Handbook of Composites From Renewable Materials comprises a set of 8 individual volumes that brings an interdisciplinary perspective to accomplish a more detailed understanding of the interplay between the synthesis, structure, characterization, processing, applications and performance of these advanced materials. The handbook covers a multitude of natural polymers/ reinforcement/ fillers and biodegradable materials. Together, the 8 volumes total at least 5000 pages and offers a unique publication. This 8th volume of the Handbook is solely focused on the Nanocomposites: Advanced Applications. Some of the important topics include but not limited to: virgin and recycled polymers applied to advanced nanocomposites; biodegradable polymer-carbon nanotube composites for water and wastewater treatment; eco-friendly nanocomposites of chitosan with natural extracts, antimicrobial agents and nanometals; controllable generation of renewable nanofibrils from green materials and their application in nanocomposites; nanocellulose and nanocellulose composites; poly (lactic acid) biopolymer composites and nanocomposites for biomedical and biopackaging applications; impact of nanotechnology in water treatment: carbon nanotube and graphene; nanomaterials in energy generation; sustainable green nanocomposites from bacterial bioplastics for food packaging applications; PLA-nanocomposites: a promising material for future from renewable resources; bio-composites from renewable resources: preparation and applications of chitosan-clay nanocomposites; nano materials: an advanced and versatile nano additive for kraft and paper industries; composites and nanocomposites based on polylactic acid obtaining; cellulose-containing scaffolds fabricated by electrospinning: applications in tissue engineering and drug delivery; biopolymer-based nanocomposites for environmental applications; calcium phosphate nanocomposites for biomedical and dental applications: recent developments; chitosan-metal nanocomposites: synthesis, characterization and applications; multi-carboxyl functionalized nano-cellulose/nano-bentonite composite for the effective removal and recovery of metal ions; biomimetic gelatin nanocomposite as a scaffold for bone tissue repair; natural starches-blended ionotropically-gelled microparticles/beads for sustained drug release and ferrogels: smart materials for biomedical and remediation applications.
Vijay Thakur Kumar Handbook of Composites from Renewable Materials, Nanocomposites. Science and Fundamentals Vijay Thakur Kumar Handbook of Composites from Renewable Materials, Nanocomposites. Science and Fundamentals
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Vijay Thakur Kumar Handbook of Composites from Renewable Materials, Nanocomposites. Science and Fundamentals

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21127.4 руб.
The Handbook of Composites From Renewable Materials comprises a set of 8 individual volumes that brings an interdisciplinary perspective to accomplish a more detailed understanding of the interplay between the synthesis, structure, characterization, processing, applications and performance of these advanced materials. The handbook covers a multitude of natural polymers/ reinforcement/ fillers and biodegradable materials. Together, the 8 volumes total at least 5000 pages and offers a unique publication. This 7th volume Handbook is solely focused on Nanocomposites: Science and Fundamentals. Some of the important topics include but not limited to: preparation, characterization and applications of nano materials from renewable resources; hydrogels and its nanocomposites from renewable resources: preparation of chitin-based nanocomposite materials through gelation with ionic liquid; starch based bionanocomposites; biorenewable nanofiber and nanocrystal; investigation of wear characteristics of dental composite reinforced with rice husk derived nanosilica filler particles; performance of regenerated cellulose/vermiculite nanocomposites fabricated via ionic liquid; preparation, structure, properties and interactions of the PVA/cellulose composites; green composites with cellulose nano-reinforcements; biomass composites from bamboo-based micro/nano fibers; synthesis and medicinal properties of polycarbonates and resins from renewable sources; nanostructured polymer composites with modified carbon nanotubes; organic-inorganic nanocomposites derived from polysaccharides; natural polymer based nanocomposites; cellulose whisker based green polymer composites; poly (lactic acid) nanocomposites reinforced with different additives; nanocrystalline cellulose; halloysite based bionanocomposites; nanostructurated composites based on biodegradable polymers and silver nanoparticles; starch-based biomaterials and nanocomposites; green nanocomposites based on PLA and natural organic fillers; chitin and chitosan based nanocomposites.
Vikas Mittal Hybrid Nanomaterials. Advances in Energy, Environment, and Polymer Nanocomposites Vikas Mittal Hybrid Nanomaterials. Advances in Energy, Environment, and Polymer Nanocomposites
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Vikas Mittal Hybrid Nanomaterials. Advances in Energy, Environment, and Polymer Nanocomposites

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17286.19 руб.
A hybrid material is defined as a material composed of an intimate mixture of inorganic components, organic components, or both types of components. In the last few years, a tremendous amount of attention has been given towards the development of materials for efficient energy harvesting; nanostructured hybrid materials have also been gaining significant advances to provide pollutant free drinking water, sensing of environmental pollutants, energy storage and conservation. Separately, intensive work on high performing polymer nanocomposites for applications in the automotive, aerospace and construction industries has been carried out, but the aggregation of many fillers, such as clay, LDH, CNT, graphene, represented a major barrier in their development. Only very recently has this problem been overcome by fabrication and applications of 3D hybrid nanomaterials as nanofillers in a variety of polymers. This book, Hybrid Nanomaterials, examines all the recent developments in the research and specially covers the following subjects: Hybrid nanostructured materials for development of advanced lithium batteries High performing hybrid nanomaterials for supercapacitor applications Nanohybrid materials in the development of solar energy applications Application of hybrid nanomaterials in water purification Advanced nanostructured materials in electromagnetic shielding of radiations Preparation, properties and application of hybrid nanomaterials in sensing of environmental pollutants Development of hybrid fillers/polymer nanocomposites for electronic applications High performance hybrid filler reinforced epoxy nanocomposites State-of-the-art overview of elastomer/hybrid filler nanocomposites
Visakh M. P. Nanomaterials and Nanocomposites. Zero- to Three-Dimensional Materials and Their Composites Visakh M. P. Nanomaterials and Nanocomposites. Zero- to Three-Dimensional Materials and Their Composites
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Visakh M. P. Nanomaterials and Nanocomposites. Zero- to Three-Dimensional Materials and Their Composites

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17669.58 руб.
Nanomaterials are defined as materials in which at least one length dimension is below 100 nanometers. In this size regime, these materials exhibit particular – and tunable – optical, electrical or mechanical properties that are not present at the macro-scale. This opens up the possibility for a plethora of applications at the interface of materials, chemistry, physics and biology, many of which have already entered the commercial realm. When nanomaterials are blended with other materials not necessarily in the nanometer regime, the resulting nanocomposites can exhibit dramatically different properties than the bulk material alone, leading to an enhanced performance in terms of, for example, increased thermal and mechanical stability. This book presents the synthesis, characterization and applications of nanomaterials and nanocomposites, covering zero-dimensional, elemental nanoparticles, one-dimensional materials such as nanorods and nanowhiskers, two-dimensional materials such as graphene and boron nitride as well as three-dimensional materials such as fullerenes, polyhedral oligomers and zeolites, complemented by bio-based nanomaterials, e.g., cellulose, chitin, starch and proteins. Introductory chapters on the state-of-the-art of nanomaterial research and the chemistry and physics in nanoscience and nanotechnology round off the book.
Ward Ian M. Mechanical Properties of Solid Polymers Ward Ian M. Mechanical Properties of Solid Polymers
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Ward Ian M. Mechanical Properties of Solid Polymers

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13938.8 руб.
Providing an updated and comprehensive account of the properties of solid polymers, the book covers all aspects of mechanical behaviour. This includes finite elastic behavior, linear viscoelasticity and mechanical relaxations, mechanical anisotropy, non-linear viscoelasicity, yield behavior and fracture. New to this edition is coverage of polymer nanocomposites, and molecular interpretations of yield, e.g. Bowden, Young, and Argon. The book begins by focusing on the structure of polymers, including their chemical composition and physical structure. It goes on to discuss the mechanical properties and behaviour of polymers, the statistical molecular theories of the rubber-like state and describes aspects of linear viscoelastic behaviour, its measurement, and experimental studies. Later chapters cover composites and experimental behaviour, relaxation transitions, stress and yielding. The book concludes with a discussion of breaking phenomena.
Vikas Mittal Thermoset Nanocomposites Vikas Mittal Thermoset Nanocomposites
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Vikas Mittal Thermoset Nanocomposites

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14413.99 руб.
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. Thermoset polymers are a class of materials with many superior properties than thermoplastic materials. Nanocomposites with a large variety of thermoset polymers have been explored and vast knowledge on the synthesis methodologies as well as properties has been generated. The goal of the book is to assimilate these research findings on the many thermoset polymer based nanocomposites systems comprehensively so as to generate better insights into the design, performance and optimization of thermoset nanocomposites.
Thomas K. Sabu Handbook of Engineering and Specialty Thermoplastics, Volume 3. Polyethers and Polyesters Thomas K. Sabu Handbook of Engineering and Specialty Thermoplastics, Volume 3. Polyethers and Polyesters
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Thomas K. Sabu Handbook of Engineering and Specialty Thermoplastics, Volume 3. Polyethers and Polyesters

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17181.95 руб.
The book summarizes many of the recent technical research accomplishments in the area of engineering polymers, such as oxygen containing main chain polymers (Polyether and Polyesters). The book emphasizes the various aspects of preparation, structure, processing, morphology, properties and applications of engineering polymers. Recent advances in the development and characterization of multi component polymer blends and composites (maco, micro and nano) based on engineering polymers are discussed in detail. The content of the book is unique as there are no books which deal with the recent advances synthesis, morphology, structure, properties and applications of engineering polymers and their blends and composites including nanocomposites. It covers an up-to-date record on the major findings and observations in the field.
Smita Mohanty Trends and Applications in Advanced Polymeric Materials Smita Mohanty Trends and Applications in Advanced Polymeric Materials
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Smita Mohanty Trends and Applications in Advanced Polymeric Materials

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14981.46 руб.
The book comprises recent innovations and developments in various high performance applications of advanced polymeric materials. It is a compilation of work from eminent academicians and scientists and the chapters provide insight into the effect of tailoring the polymeric systems, blending matrices with nano / micro fillers for improved performance and properties. The book details the following topics: Smart & high performance coatings High barrier packaging Solar energy harvesting Power generation using polymers Polymer sensors Conducting polymers Gas transport membranes Smart drug delivery systems
Nicolais Luigi Nanocomposites. In Situ Synthesis of Polymer-Embedded Nanostructures Nicolais Luigi Nanocomposites. In Situ Synthesis of Polymer-Embedded Nanostructures
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Nicolais Luigi Nanocomposites. In Situ Synthesis of Polymer-Embedded Nanostructures

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8470.2 руб.
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.
Susheel Kalia Biodegradable and Biobased Polymers for Environmental and Biomedical Applications Susheel Kalia Biodegradable and Biobased Polymers for Environmental and Biomedical Applications
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Susheel Kalia Biodegradable and Biobased Polymers for Environmental and Biomedical Applications

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17286.19 руб.
This volume incorporates 13 contributions from renowned experts from the relevant research fields that are related biodegradable and biobased polymers and their environmental and biomedical applications. Specifically, the book highlights: Developments in polyhydroxyalkanoates applications in agriculture, biodegradable packaging material and biomedical field like drug delivery systems, implants, tissue engineering and scaffolds The synthesis and elaboration of cellulose microfibrils from sisal fibres for high performance engineering applications in various sectors such as the automotive and aerospace industries, or for building and construction The different classes and chemical modifications of tannins Electro-activity and applications of Jatropha latex and seed The synthesis, properties and applications of poly(lactic acid) The synthesis, processing and properties of poly(butylene succinate), its copolymers, composites and nanocomposites The different routes for preparation polymers from vegetable oil and the effects of reinforcement and nano-reinforcement on the physical properties of such biobased polymers The different types of modified drug delivery systems together with the concept of the drug delivery matrix for controlled release of drugs and for antitumor drugs The use of nanocellulose as sustainable adsorbents for the removal of water pollutants mainly heavy metal ions, organic molecules, dyes, oil and CO2 The main extraction techniques, structure, properties and different chemical modifications of lignins Proteins and nucleic acids based biopolymers The role of tamarind seed polysaccharide-based multiple-unit systems in sustained drug release
Susheel Kalia Polymer Nanocomposites based on Inorganic and Organic Nanomaterials Susheel Kalia Polymer Nanocomposites based on Inorganic and Organic Nanomaterials
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Susheel Kalia Polymer Nanocomposites based on Inorganic and Organic Nanomaterials

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14981.46 руб.
This book covers all aspects of the different classes of nanomaterials – from synthesis to application. It investigates in detail the use and feasibility of developing nanocomposites with these nanomaterials as reinforcements. The book encompasses synthesis and properties of cellulose nanofibers, bacterial nanocellulose, carbon nanotubes / nanofibers, graphene, nanodiamonds, nanoclays, inorganic nanomaterials and their nanocomposites for high-end applications such as electronic devices, energy storage, structural and packaging. The book also provides insight into various modification techniques for improving the functionality of nanomaterials apart from their compatibility with the base matrix.
Vijay Thakur Kumar Nanocellulose Polymer Nanocomposites. Fundamentals and Applications Vijay Thakur Kumar Nanocellulose Polymer Nanocomposites. Fundamentals and Applications
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Vijay Thakur Kumar Nanocellulose Polymer Nanocomposites. Fundamentals and Applications

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17439.98 руб.
Biorenewable polymers based nanomaterials are rapidly emerging as one of the most fascinating materials for multifunctional applications. Among biorenewable polymers, cellulose based nanomaterials are of great importance due to their inherent advantages such as environmental friendliness, biodegradability, biocompatibility, easy processing and cost effectiveness, to name a few. They may be produced from biological systems such as plants or be chemically synthesised from biological materials. This book summarizes the recent remarkable achievements witnessed in green technology of cellulose based nanomaterials in different fields ranging from biomedical to automotive. This book also discusses the extensive research developments for next generation nanocellulose-based polymer nanocomposites. The book contains seventeen chapters and each chapter addresses some specific issues related to nanocellulose and also demonstrates the real potentialities of these nanomaterials in different domains. The key features of the book are: Synthesis and chemistry of nanocellulose from different biorenewable resources Different characterization of nanocellulosic materials and their respective polymer nanocomposites Physico-chemical, thermal and mechanical investigation of nanocellulose based polymer nanocomposites Provides elementary information and rich understanding of the present state-of- art of nanocellulose-based materials Explores the full range of applications of different nanocellulose-based materials.
Sabu Thomas Rheology and Processing of Polymer Nanocomposites Sabu Thomas Rheology and Processing of Polymer Nanocomposites
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Sabu Thomas Rheology and Processing of Polymer Nanocomposites

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14981.46 руб.
Rheology and Processing of Polymer Nanocomposites examines the current state of the art and new challenges in the characterization of nanofiller/polymer interactions, nanofiller dispersion, distribution, filler-filler interactions and interfaces in polymer nanocomposites. A one-stop reference resource for important research accomplishments in this area, it benefits academics, researchers, scientists, and engineers in the field of polymer nanocomposites in their daily work.
İpek Abasıkeleş, M.Fatih Akay PERFORMANCE EVALUATION OF DIRECTORY-BASED CACHE COHERENCE PROTOCOLS İpek Abasıkeleş, M.Fatih Akay PERFORMANCE EVALUATION OF DIRECTORY-BASED CACHE COHERENCE PROTOCOLS
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İpek Abasıkeleş, M.Fatih Akay PERFORMANCE EVALUATION OF DIRECTORY-BASED CACHE COHERENCE PROTOCOLS

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9877 руб.
The performance of three directory-based cache- coherence protocols; strict request-response, intervention forwarding and reply forwarding are evaluated via simulation on the SOME-Bus, which is a fiber-optic interconnection network supporting DSM. The simulated system contains 64 nodes, each of which has a processor, cache controller, directory controller and output channel. Simulations have been conducted for each protocol to measure average processor utilization and average network latency for varying values of DSM parameters such as the ratio of the mean channel service time to mean thread run time (T/R), probability of a cache block being in modified state {P(M)}, the fraction of write misses {P(W)} and under different traffic patterns. The results reveal that the performance of all protocols decreases under all traffic patterns as P(W),P(M) or T/R increases. The effect of P(W) on the performance of the protocols reduces as P(M) increases. Reply forwarding performs the best for high P(M) values, intervention forwarding yields the best performance for low P(M) and high P(W) values and strict request-response is the best protocol under hot-region (HR) traffic.
Vikas Mittal High Performance Polymers and Engineering Plastics Vikas Mittal High Performance Polymers and Engineering Plastics
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Vikas Mittal High Performance Polymers and Engineering Plastics

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15443.56 руб.
This book describes advances in synthesis, processing, and technology of environmentally friendly polymers generated from renewable resources. With contents based on a wide range of functional monomers and contributions from eminent researchers, this volume demonstrates the design, synthesis, properties and applications of plant oil based polymers, presenting an elaborate review of acid mediated polymerization techniques for the generation of green polymers. Chemical engineers are provided with state-of-the-art information that acts to further progress research in this direction.
Johannes Fink Karl The Chemistry of Bio-based Polymers Johannes Fink Karl The Chemistry of Bio-based Polymers
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Johannes Fink Karl The Chemistry of Bio-based Polymers

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15898.4 руб.
An exhaustive and timely overview of renewable polymers from a respected chemist and successful author The recent explosion of interdisciplinary research has fragmented the knowledge base surrounding renewable polymers. The Chemistry of Bio-based Polymers brings together, in one volume, the research and work of Professor Johannes Fink, focusing on biopolymers that can be synthesized from renewable polymers. After introducing general aspects of the field, the book’s subsequent chapters examine the chemistry of biodegradable polymeric types sorted by their chemical compounds, including the synthesis of low molecular compounds. Various categories of biopolymers are detailed including vinyl-based polymers, acid and lactone polymers, ester and amide polymers, carbohydrate-related polymers and others. Procedures for the preparation of biopolymers and biodegradable nanocomposites are arranged by chemical methods and in vitro biological methods, with discussion of the issue of “plastics from bacteria.” The factors influencing the degradation and biodegradation of polymers used in food packaging, exposed to various environments, are detailed at length. The book covers the medical applications of bio-based polymers, concentrating on controlled drug delivery, temporary prostheses, and scaffolds for tissue engineering. Professor Fink also addresses renewable resources for fabricating biofuels and argues for localized biorefineries, as biomass feedstocks are more efficiently handled locally. Audience The Chemistry of Bio-based Polymers will be read by chemists, polymer and materials scientists, chemical, bio-based, and biomedical engineers, agricultural and environmental faculty and all those who work in the bioeconomy area. This book will be critical for engineers in a number of industries including food packaging, medical devices, personal care, fuels, auto, and construction.
Sie Tjong Chin Polymer Composites with Carbonaceous Nanofillers. Properties and Applications Sie Tjong Chin Polymer Composites with Carbonaceous Nanofillers. Properties and Applications
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Sie Tjong Chin Polymer Composites with Carbonaceous Nanofillers. Properties and Applications

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2215.41 руб.
Written by an expert in the field of nanomaterials, composites, and polymers, this book provides up-to-date information on recent advances in various aspects of polymer composites reinforced by carbonaceous nanofillers, including their fabrication and their electrical, thermal, and mechanical properties. It also extensively covers applications of these nanocomposites in fuel cells, sensors, electromagnetic interference shielding, human implants and scaffolds.
Johannes Fink Karl Marine, Waterborne, and Water-Resistant Polymers. Chemistry and Applications Johannes Fink Karl Marine, Waterborne, and Water-Resistant Polymers. Chemistry and Applications
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Johannes Fink Karl Marine, Waterborne, and Water-Resistant Polymers. Chemistry and Applications

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13444.25 руб.
This book focuses on the chemistry of marine polymers, waterborne polymers, and water-resistant polymers, as well as the special applications of these materials. After the chemistry of marine polymers and their types are discussed, the uses of these polymers are detailed, as well as various analytical and characterization testing methods. The book also emphasizes the polymers that are most environmentally-friendly along with their origin and industrial applications. The polymers from these 3 types serve a variety of industries including medical equipment and devices, outdoor coatings and corrosion protection, food packaging, saltwater and freshwater marine purposes, paper, and marine well application, to name just a few.
Sie Tjong Chin Polymer Composites with Carbonaceous Nanofillers. Properties and Applications Sie Tjong Chin Polymer Composites with Carbonaceous Nanofillers. Properties and Applications
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Sie Tjong Chin Polymer Composites with Carbonaceous Nanofillers. Properties and Applications

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14750.41 руб.
Written by an expert in the field of nanomaterials, composites, and polymers, this book provides up-to-date information on recent advances in various aspects of polymer composites reinforced by carbonaceous nanofillers, including their fabrication and their electrical, thermal, and mechanical properties. It also extensively covers applications of these nanocomposites in fuel cells, sensors, electromagnetic interference shielding, human implants and scaffolds.
Yijun Wang High Modulus Dental Nanocomposites Yijun Wang High Modulus Dental Nanocomposites
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Yijun Wang High Modulus Dental Nanocomposites

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9627 руб.
When materials scientists in dentistry turn to use nanofiller in composites because of their superb properties, rather than microfiller in dental restorations, they are also facing a series of new challenges. This book reviews dental materials that are currently used in the industry. It presents the methods of fabricating a type of novel high elastic modulus dental resin nanocomposites, and investigates their mechanical properties including the visco-elastic properties associated with filler loading and coupling agents by nanoindentation. Key features include: Proposes a type of novel resin composites in the applications of dental laminate structures; Details on how to fabricate this dental nanocomposites, how to measure their mechanical properties by nanoindentation, and how to predict the elastic modulus using several models; Discussion of visco-elastic properties of resin nanocomposites and analysis of their behaviors using a new VEP model. The properties of dental resin nanocomposites and the modeling/testing methodology presented in this book are not only applicable to dental composites, but also to general particulate-filled polymer composites as well.
Chavan Deepali Pharmaceutical Polymer Chemistry Chavan Deepali Pharmaceutical Polymer Chemistry
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Chavan Deepali Pharmaceutical Polymer Chemistry

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8789 руб.
Polymers: The word polymer derived from a greek word polymerors: poly means many and merors means parts. Hence the meaning of polymers is many parts. Polymers are usually longer than oligomers. A polymer is a compound of high molecular mass obtained by the combination of large number of small molecules i.e. monomers. They may include number of simple repeating units called monomer. The properties of monomers and polymers are different. Polymers are not volatile, and their solubility may vary depending on the structure of a monomeric unit from high to very low. Polymers are also called macromolecules because these are single, giant molecules, i.e., big size molecules.
Zhang Jia-wei Multi-functional Nanocomposites for the Energy Conversion Zhang Jia-wei Multi-functional Nanocomposites for the Energy Conversion
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Zhang Jia-wei Multi-functional Nanocomposites for the Energy Conversion

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8677 руб.
The contents of this book include properties analysis on functional dielectric material used in the electrical engineering; electroactive polymers (EAPs); electromechanical and magnetoelectric properties of electrets; electrical conduction, energy transfer and chemical changes of electrical insulating polymers under the influence of the high voltage corona discharge; piezoceramic sensor and actuator. The fields of this book cover the electric engineering, mechanic engineering, chemical engineering and material science. This book is suitable for use as a textbook and reference book for undergraduate and graduate students who are interested in the research of functional dielectric materials and insulating polymers. This book is also suitable for professionals who work in the fields of insulating materials, EAPs, energy conversion, sensors and actuators etc.
Visakh M. P. Polyethylene-Based Blends, Composites and Nanocomposities Visakh M. P. Polyethylene-Based Blends, Composites and Nanocomposities
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Visakh M. P. Polyethylene-Based Blends, Composites and Nanocomposities

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14981.46 руб.
The book focusses on the recent technical research accomplishments in the area of polyethylene-based blends, composites and nanocomposites by looking at the various aspects of processing, morphology, properties and applications. In particular, the book details the important developments in areas such as the structure-properties relationship of polyethylene; modification of polyethylene with radiation and ion implantation processes; stabilization of irradiated polyethylene by the introduction of antioxidants; reinforcement of polyethylene through carbon-based materials as additives; characterization of carbon-based polyethylenes composites, polyethylene-based blends with thermoplastic and thermoset; characterization of polyethylene-based thermoplastic and thermoset blends; polyethylene-based blends with natural rubber and synthetic rubber; characterization of polyethylene-based natural rubber and synthetic rubber blends; characterization of polyethylene-based composites.
Vitaliy Khutoryanskiy V. Temperature-Responsive Polymers. Chemistry, Properties, and Applications Vitaliy Khutoryanskiy V. Temperature-Responsive Polymers. Chemistry, Properties, and Applications
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Vitaliy Khutoryanskiy V. Temperature-Responsive Polymers. Chemistry, Properties, and Applications

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16016.48 руб.
An authoritative resource that offers an understanding of the chemistry, properties and applications of temperature-responsive polymers With contributions from a distinguished panel of experts, Temperature-Responsive Polymers puts the focus on hydrophilic polymers capable of changing their physicochemical properties in response to changes in environmental temperature. The contributors review the chemistry of these systems, and discuss a variety of synthetic approaches for preparation of temperature-responsive polymers, physicochemical methods of their characterisation and potential applications in biomedical areas. The text reviews a wide-variety of topics including: The characterisation of temperature-responsive polymers; Infrared and Raman spectroscopy; Applications of temperature-responsive polymers grafted onto solid core nanoparticles; and much more. The contributors also explore how temperature-responsive polymers can be used in the biomedical field for applications such as tissue engineering. This important resource: Offers an important synthesis of the current research on temperature-responsive polymers Covers the chemistry, the synthetic approaches for presentation and the physiochemical method of temperature-responsive polymers Includes a review of the fundamental characteristics of temperature-responsive polymers Explores many of the potential applications in biomedical science, including drug delivery and gene therapy Written for polymer scientists in both academia and industry as well as postgraduate students working in the area of stimuli-responsive materials, this vital text offers an exploration of the chemistry, properties and current applications of temperature-responsive polymers.
Maurizio Galimberti Rubber-Clay Nanocomposites. Science, Technology, and Applications Maurizio Galimberti Rubber-Clay Nanocomposites. Science, Technology, and Applications
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Maurizio Galimberti Rubber-Clay Nanocomposites. Science, Technology, and Applications

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12748.89 руб.
The one-stop resource for rubber-clay nanocomposite information The first comprehensive, single-volume book to compile all the most important data on rubber-clay nanocomposites in one place, Rubber-Clay Nanocomposites: Science, Technology, and Applications reviews rubber-clay nanocomposites in an easy-to-reference format designed for R&D professionals. Including contributions from experts from North America, Europe, and Asia, the book explores the properties of compounds with rubber-clay nanocomposites, including their rheology, curing kinetics, mechanical properties, and many others. Rubber-clay nanocomposites are of growing interest to the scientific and technological community, and have been shown to improve rubber compound reinforcement and impermeability. These natural mineral fillers are of potential interest for large-scale applications and are already making an impact in several major fields. Packed with valuable information about the synthesis, processing, and mechanics of these reinforced rubbers, the book covers assorted rubber-clay nanocomposites applications, such as in automotive tires and as polymer fillers. Promoting common knowledge and interpretation of the most important aspects of rubber-clay nanocomposites, and clarifying the main results achieved in the field of rubbers and crosslinked rubbers—something not covered in other books in the field—Rubber-Clay Nanocomposites helps scientists understand morphology, vulcanization, permeability, processing methods, and characterization factors quickly and easily.
Deyue Yan Hyperbranched Polymers. Synthesis, Properties, and Applications Deyue Yan Hyperbranched Polymers. Synthesis, Properties, and Applications
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Deyue Yan Hyperbranched Polymers. Synthesis, Properties, and Applications

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An A-to-Z of doping including its definition, its importance, methods of measurement, advantages and disadvantages, properties and characteristics—and role in conjugated polymers The versatility of polymer materials is expanding because of the introduction of electro-active behavior into the characteristics of some of them. The most exciting development in this area is related to the discovery of intrinsically conductive polymers or conjugated polymers, which include such examples as polyacetylene, polyaniline, polypyrrole, and polythiophene as well as their derivatives. «Synmet» or «synthetic metal» conjugated polymers, with their metallic characteristics, including conductivity, are of special interest to researchers. An area of limitless potential and application, conjugated polymers have sparked enormous interest, beginning in 2000 when the Nobel Prize for the discovery and development of electrically conducting conjugated polymers was awarded to three scientists: Alan J. Heeger, Alan G. MacDiarmid, and Hideki Shirakawa. Conjugated polymers have a combination of properties—both metallic (conductivity) and polymeric; doping gives the conjugated polymer's semiconducting a wide range of conductivity, from insulating to low conducting. The doping process is a tested effective method for producing conducting polymers as semiconducting material, providing a substitute for inorganic semiconductors. Doping in Conjugated Polymers is the first book dedicated to the subject and offers a comprehensive A-to-Z overview. It details doping interaction, dopant types, doping techniques, and the influence of the dopant on applications. It explains how the performance of doped conjugated polymers is greatly influenced by the nature of the dopants and their level of distribution within the polymer, and shows how the electrochemical, mechanical, and optical properties of the doped conjugated polymers can be tailored by controlling the size and mobility of the dopants counter ions. The book also examines doping at the nanoscale, in particular, with carbon nanotubes. Readership The book will interest a broad range of researchers including chemists, electrochemists, biochemists, experimental and theoretical physicists, electronic and electrical engineers, polymer and materials scientists. It can also be used in both graduate and upper-level undergraduate courses on conjugated polymers and polymer technology.
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A volume in Adult Education Special Topics: Theory, Research,and Practice in Lifelong LearningSeries Editor: Kathleen P. King, Fordham UniversityHuman Performance and Training Issues was developed to help researchers and practitioners select measuresto be used in the evaluation of human performance and helps them seek better, more efficient and effectiveways to close performance gaps in this global economy. The book is bursting with innovative ideas that willhelp readers create powerful solutions in their organization, their country, their region and their continent.Human Performance and Training Issues should be of value to anyone interested in matching the rightsolutions to the right problems, addressing causes by providing a range of solutions to improve humanperformance in any organizations in the global economy. The volume provides foundational chapters for the field and human performance to guidedevelopment or improvement of HR management strategies, training and management, which will prove to be dynamic, efficient, responsive tochanges encompassing organizations, and grounded in vision and excellence.Critical issues facing organizations today include how to build intellectual capital, establish and maintain a high-performance workplace, enhanceprofitability, and encourage productivity. These needs require practitioners to go beyond a competency-based approach to training. From the theory ofandragogy to the practical examples and recommendations provided by our highly ...
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The comprehensive, practical book that explores the principles, properties, and applications of electrical polymers The electrical properties of polymers present almost limitless possibilities for industrial research and development, and this book provides an in-depth look at these remarkable molecules. In addition to traditional applications in insulating materials, wires, and cables, electrical polymers are increasingly being used in a range of emerging technologies. Presenting a comprehensive overview of how electrical polymers function and how they can be applied in the electronics, automotive, medical, and military fields, Polymers for Electricity and Electronics: Materials, Properties, and Applications presents intensive and accessible coverage with a focus on practical applications. Including examples of state-of-the-art scientific issues, the book evaluates new technologies—such as light emitting diodes, molecular electronics, liquid crystals, nanotechnology, optical fibers, and soft electronics—and explains the advantages of conductive polymers as well as their processibility and commercial uses. This book is an essential resource for anyone working with, or interested in, polymers and polymer science. In addition, appendices that detail the electrical properties of selected polymers as well as list additional ASTM and corresponding international testing standards and methods for testing electrical properties are also included.
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Polymers are an important part in everyday life; products made from polymers range from sophisticated articles, such as biomaterials, to aerospace materials. One of the reasons for the great popularity exhibited by polymers is their ease of processing. Polymer properties can be tailored to meet specific needs by varying the «atomic composition» of the repeat structure, by varying molecular weight and by the incorporation (via covalent and non-covalent interactions) of an enormous range of compounds to impart specific activities. In food science, the use of polymeric materials is widely explored, from both an engineering and a nutraceutical point of view. Regarding the engineering application, researchers have discovered the most suitable materials for intelligent packaging which preserves the food quality and prolongs the shelf-life of the products. Furthermore, in agriculture, specific functionalized polymers are used to increase the efficiency of treatments and reduce the environmental pollution. In the nutraceutical field, because consumers are increasingly conscious of the relationship between diet and health, the consumption of high quality foods has been growing continuously. Different compounds (e.g. high quality proteins, lipids and polysaccharides) are well known to contribute to the enhancement of human health by different mechanisms, reducing the risk of cardiovascular disease, coronary disease, and hypertension. This first volume, of this two volume book, concerns the application of polymers in food packaging.
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Polysaccharide nanocrystals, an emerging green nanoingredient (nanomaterial) with high crystallinity obtained by acid hydrolysis of biomass-based polysaccharides, are of scientific and economic significance owing to their abundance, biodegradation potential, and fascinating functional performance. This versatile class of materials can be used in nanocomposites such as rubber or polyester, and in functional materials such as drug carriers, bio-inspired mechanically adaptive materials or membranes, to name but a few. This book encompasses the extraction, structure, properties, surface modification, theory, and mechanism of diverse functional systems derived from polysaccharide nanocrystals. This highly sought-after trendy book is currently the only monograph devoted to the most current knowledge pertaining to this exciting subject area. It is ideal for researchers and stakeholders who wish to broaden and deepen their knowledge in the fast-moving and rapidly expanding R&D field of polymeric materials.
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The incorporation of functional ingredients in a given food system and the processing and handling of such foods are associated with nutritional challenges for their healthy delivery. The extreme sensitivity of some components cause significant loss of product quality, stability, nutritional value and bioavailability, and the overall acceptability of the food product. Consequently, encapsulation has been successfully used to improve stability and bioavailability of functional ingredients. Encapsulation is one example of technology that has the potential to meet the challenge of successfully incorporating and delivering functional ingredients into a range of food types. The book will cover topics about 1) Characterization of novel polymers and their use in encapsulation processes. 2) Stability of nutraceutical compounds encapsulated with novel polymers. 3) Application of encapsulated compounds with novel polymers in functional food systems. This book provides a detailed overview of technologies for preparing and characterisation of encapsulates for food active ingredients using modified polymers. The use of modified polymers as coating materials it is a field that still needs study. The book is aimed to inform students and researchers in the areas of food science and food technology, and professionals in the food industry.
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An A-to-Z of doping including its definition, its importance, methods of measurement, advantages and disadvantages, properties and characteristics—and role in conjugated polymers The versatility of polymer materials is expanding because of the introduction of electro-active behavior into the characteristics of some of them. The most exciting development in this area is related to the discovery of intrinsically conductive polymers or conjugated polymers, which include such examples as polyacetylene, polyaniline, polypyrrole, and polythiophene as well as their derivatives. «Synmet» or «synthetic metal» conjugated polymers, with their metallic characteristics, including conductivity, are of special interest to researchers. An area of limitless potential and application, conjugated polymers have sparked enormous interest, beginning in 2000 when the Nobel Prize for the discovery and development of electrically conducting conjugated polymers was awarded to three scientists: Alan J. Heeger, Alan G. MacDiarmid, and Hideki Shirakawa. Conjugated polymers have a combination of properties—both metallic (conductivity) and polymeric; doping gives the conjugated polymer's semiconducting a wide range of conductivity, from insulating to low conducting. The doping process is a tested effective method for producing conducting polymers as semiconducting material, providing a substitute for inorganic semiconductors. Doping in Conjugated Polymers is the first book dedicated to the subject and offers a comprehensive A-to-Z overview. It details doping interaction, dopant types, doping techniques, and the influence of the dopant on applications. It explains how the performance of doped conjugated polymers is greatly influenced by the nature of the dopants and their level of distribution within the polymer, and shows how the electrochemical, mechanical, and optical properties of the doped conjugated polymers can be tailored by controlling the size and mobility of the dopants counter ions. The book also examines doping at the nanoscale, in particular, with carbon nanotubes. Readership The book will interest a broad range of researchers including chemists, electrochemists, biochemists, experimental and theoretical physicists, electronic and electrical engineers, polymer and materials scientists. It can also be used in both graduate and upper-level undergraduate courses on conjugated polymers and polymer technology.
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