Physical Gels from Biological and Synthetic Polymers

Physical Gels from Biological and Synthetic Polymers

Author: Madeleine Djabourov

Publisher: Cambridge University Press

Published: 2013-05-16

Total Pages: 367

ISBN-13: 0521769647

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Provides a unique, interdisciplinary perspective on state-of-the-art physical gels, highlighting recent developments and practical applications.


Polymeric Gels

Polymeric Gels

Author: Kunal Pal

Publisher: Woodhead Publishing

Published: 2018-06-15

Total Pages: 570

ISBN-13: 0081021801

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Polymeric Gels: Characterization, Properties and Biomedical Applications covers the fundamentals and applications of polymeric gels. Particular emphasis is given to their synthesis, properties and characteristics, with topics such as natural, synthetic, and smart polymeric gels, medical applications, and advancements in conductive and magnetic gels presented. The book covers the basics and applications of hydrogels, providing readers with a comprehensive guide on the types of polymeric gels used in the field of biomedical engineering. Provides guidance for decisions on the suitability and appropriateness of a synthetic route and characterization technique for particular polymeric networks Analyzes and compares experimental data Presents in-depth information on the physical properties of polymeric gels using mathematical models Uses an interdisciplinary approach to discuss potential new applications for both established polymeric gels and recent advances


Biological and Synthetic Polymer Networks and Gels

Biological and Synthetic Polymer Networks and Gels

Author: Ferenc Horkay

Publisher: Wiley-VCH

Published: 2005-12-06

Total Pages: 402

ISBN-13:

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This volume of Macromolecular Symposia contains papers presented at the Polymer Networks 2004 Conference, held in Bethesda, MD, in August 2004. The conference highlighted the latest findings in the fields of materials science, nanotechnology, surface science, rheology, and modeling relevant to the formation, structure and application of synthetic and biopolymer networks and gels. In particular, the conference focused on contemporary experimental tools and theoretical models to describe biological phenomena with physical concepts that allow predictive, model-driven research. The collection of papers illustrates the revolution that this rapidly expanding field of polymer science is currently experiencing, notably in the areas of biomedical research, medical diagnostics and biotechnology.


Polymer Gels

Polymer Gels

Author: Vijay Kumar Thakur

Publisher: Springer

Published: 2018-08-07

Total Pages: 412

ISBN-13: 9811060835

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This book addresses a range of synthesis and characterization techniques that are critical for tailoring and broadening the various aspects of polymer gels, as well as the numerous advantages that polymer gel-based materials offer. It presents a comprehensive collection of chapters on the recent advances and developments in the science and fundamentals of both synthetic and natural polymer-based gels. Topics covered include: synthesis and structure of physically/chemically cross-linked polymer-gels/polymeric nanogels; gel formation through non-covalent cross-linking; molecular design and characterization; polysaccharide-based polymer gels: synthesis, characterization, and properties; modified polysaccharide gels: silica-based polymeric gels as platforms for the delivery of pharmaceuticals; gel-based approaches in genomic and proteomic sciences; emulgels in drug delivery; and organogels. The book provides a cutting-edge resource for researchers and scientists working in various fields involving polymers, biomaterials, bio-nanotechnology and functional materials.


Natural and Synthetic Biomedical Polymers

Natural and Synthetic Biomedical Polymers

Author: Sangamesh G. Kum bar

Publisher: Newnes

Published: 2014-01-21

Total Pages: 421

ISBN-13: 0123972906

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Polymers are important and attractive biomaterials for researchers and clinical applications due to the ease of tailoring their chemical, physical and biological properties for target devices. Due to this versatility they are rapidly replacing other classes of biomaterials such as ceramics or metals. As a result, the demand for biomedical polymers has grown exponentially and supports a diverse and highly monetized research community. Currently worth $1.2bn in 2009 (up from $650m in 2000), biomedical polymers are expected to achieve a CAGR of 9.8% until 2015, supporting a current research community of approximately 28,000+. Summarizing the main advances in biopolymer development of the last decades, this work systematically covers both the physical science and biomedical engineering of the multidisciplinary field. Coverage extends across synthesis, characterization, design consideration and biomedical applications. The work supports scientists researching the formulation of novel polymers with desirable physical, chemical, biological, biomechanical and degradation properties for specific targeted biomedical applications. Combines chemistry, biology and engineering for expert and appropriate integration of design and engineering of polymeric biomaterials Physical, chemical, biological, biomechanical and degradation properties alongside currently deployed clinical applications of specific biomaterials aids use as single source reference on field. 15+ case studies provides in-depth analysis of currently used polymeric biomaterials, aiding design considerations for the future


Physical Networks

Physical Networks

Author: Walther Burchard

Publisher: Springer Science & Business Media

Published: 1990-05-31

Total Pages: 444

ISBN-13: 9781851664139

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Polymer Gels

Polymer Gels

Author: D. DeRossi

Publisher: Springer Science & Business Media

Published: 2012-12-06

Total Pages: 336

ISBN-13: 1468458922

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This volume contains a series of papers originally presented at the Symposium on Polymer Gels organized and sponsored by the Research Group on Polymer Gels,The Society of Polymer Science of Japan and co-sponsored by the Science and Technology Agency (ST A) and MIT!, Japan. The Symposium took place at Tsukuba Science City on 18th and 19th September, 1989. Recognized experts in their fields were invited to speak and there was a strong attendance from government, academic and industrial research centers. The purpose of the Symposium was to review the state of the art and to present and discuss recent progress in the understanding of the behavioral properties of polymer gels and their application to biomedical, environmental and robotic fields. Most of the papers and related discussions concentrated on the swelling behavior of hydrogels and chemomechanical systems, both artificial and naturally occurring, in which external stimuli of a physical or chemical nature control energy transformation or signal transduction. The recent great interest in chemomechanical systems based on polymer gels has stimulated considerable effort towards the development of new sensors and actuators, controllable membrane separation processes, and delivery systems in which the functions of sensing, processing and actuation are all built into the polymeric network device. Artificial chemomechanical systems, through the use of environmentally sensitive polymer gels, are emerging as interesting materials for mimicking basic processes previously only confined to the biological world, and commercially viable applications are also foreseen in the not-too-distant future.


Polymer Gels

Polymer Gels

Author: Vijay Kumar Thakur

Publisher: Springer

Published: 2018-02-12

Total Pages: 419

ISBN-13: 9811060800

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This book summarizes the recent advances in the science and engineering of polymer-gel-based materials in different fields. It also discusses the extensive research developments for the next generation of smart materials. It takes an in-depth look at the current perspectives and market opportunities while pointing to new possibilities and applications. The book addresses important topics such as stimuli responsive polymeric nanoparticles for cancer therapy; polymer gel containing metallic materials; chemotherapeutic applications in oncology; conducting polymer-based gels and their applications in biological sensors; imprinted polymeric gels for pharmaceutical and biomedical purposes; applications of biopolymeric gels in the agricultural sector; application of polymer gels and their nanocomposites in electrochemistry; smart polyelectrolyte gels as a platform for biomedical applications; agro-based polymer gels and their application in purification of industrial water wastes; polymer gel composites for bio-applications. It will be of interest to researchers working in both industry and academia.


Polysaccharide Hydrogels

Polysaccharide Hydrogels

Author: Pietro Matricardi

Publisher: CRC Press

Published: 2016-01-05

Total Pages: 527

ISBN-13: 9814613622

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Hydrogels are an emerging area of interest in medicine as well as pharmaceutics, and their physico-chemical characterization is fundamental to their practical applications. Compared with synthetic polymers, polysaccharides that are widely present in living organisms and come from renewable sources are extremely advantageous for hydrogel formation.


Food Polymers, Gels and Colloids

Food Polymers, Gels and Colloids

Author: E. Dickinson

Publisher: Elsevier

Published: 1991-01-01

Total Pages: 587

ISBN-13: 1845698339

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Manufactured foodstuffs typically exist in the form of complex, multi-phase, multi-component, colloidal systems. One way to try to make sense of their chemical and structural complexity is to study simple model systems in which the nature and properties of the polymer molecules and dispersed particles are relatively well known. This volume consists of a collection of papers delivered at a conference on food colloids, the main theme of which was the role of food macromolecules in determining the stability, structure, texture and rheology of food colloids, with particular reference to gelling behaviour and interactions between macromolecules and interfaces. A feature of the collection is the wide range of physico-chemical techniques now being used to address problems in this field.