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Polysaccharide Based Graft Copolymers / edited by Susheel Kalia, M.W. Sabaa.

Por: Colaborador(es): Tipo de material: TextoTextoEditor: Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 2013Descripción: x, 353 páginas 159 ilustraciones, 40 ilustraciones en color. recurso en líneaTipo de contenido:
  • texto
Tipo de medio:
  • computadora
Tipo de portador:
  • recurso en línea
ISBN:
  • 9783642365669
Formatos físicos adicionales: Edición impresa:: Sin títuloClasificación LoC:
  • QD380-388
Recursos en línea:
Contenidos:
From the contents: Polymer Grafting: A Versatile Means to Modify the Polysaccharides -- Cellulose graft copolymers: Synthesis, Properties and Applications -- Starch-g-copolymers: Synthesis, Properties and Applications -- Chitosan-g-copolymers: Synthesis, Properties and Applications -- Gum-g-copolymers: Synthesis, Properties and Applications -- Dextran-g-copolymers: Synthesis, Properties and Applications -- Polysaccharide hydrogels: synthesis, characterization and applications -- Hyaluronic acid-g-copolymers: Synthesis, Properties and Applications -- Polysaccharide based graft copolymers for biomedical applications.
Resumen: Renowned experts give all essential aspects of the techniques and applications of graft copolymers based on polysaccharides. Polysaccharides are the most abundant natural organic materials and polysaccharide based graft copolymers are of great importance and widely used in various fields. Natural polysaccharides have recently received more attention due to their advantages over synthetic polymers by being non-toxic, biodegradable and available at low cost. Modification of polysaccharides through graft copolymerization improves the properties of polysaccharides. Grafting is known to improve the characteristic properties of the backbones. Such properties include water repellency, thermal stability, flame resistance, dye-ability and resistance towards acid-base attack and abrasion. Polysaccharides and their graft copolymers find extensive applications in diversified fields. Applications of modified polysaccharides include drug delivery devices, controlled release of fungicides, selective water absorption from oil-water emulsions, purification of water etc.
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From the contents: Polymer Grafting: A Versatile Means to Modify the Polysaccharides -- Cellulose graft copolymers: Synthesis, Properties and Applications -- Starch-g-copolymers: Synthesis, Properties and Applications -- Chitosan-g-copolymers: Synthesis, Properties and Applications -- Gum-g-copolymers: Synthesis, Properties and Applications -- Dextran-g-copolymers: Synthesis, Properties and Applications -- Polysaccharide hydrogels: synthesis, characterization and applications -- Hyaluronic acid-g-copolymers: Synthesis, Properties and Applications -- Polysaccharide based graft copolymers for biomedical applications.

Renowned experts give all essential aspects of the techniques and applications of graft copolymers based on polysaccharides. Polysaccharides are the most abundant natural organic materials and polysaccharide based graft copolymers are of great importance and widely used in various fields. Natural polysaccharides have recently received more attention due to their advantages over synthetic polymers by being non-toxic, biodegradable and available at low cost. Modification of polysaccharides through graft copolymerization improves the properties of polysaccharides. Grafting is known to improve the characteristic properties of the backbones. Such properties include water repellency, thermal stability, flame resistance, dye-ability and resistance towards acid-base attack and abrasion. Polysaccharides and their graft copolymers find extensive applications in diversified fields. Applications of modified polysaccharides include drug delivery devices, controlled release of fungicides, selective water absorption from oil-water emulsions, purification of water etc.

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