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Titlebook: Cellulose-Based Superabsorbent Hydrogels; Md. Ibrahim H. Mondal Living reference work 20200th edition Cellulose.Natural Polymers.Renewabl

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Cellulose-Based Hydrogels for Pharmaceutical and Biomedical Applications, ten to 1000 times higher than its normal weight. The chemical cross-linking, physical entanglement, hydrogen bonds, and the ionic bonds are responsible to achieve the network of hydrogels. Hydrogels based on natural polymers like chitosan and cellulose are of great interest because of their abundan
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Cellulose-Based Hydrogels for Wound Healing,of three separate but overlapping phases, i.e., inflammation, formation of new tissue, and remodeling. Although wound healing is an innate ability of every multicellular organism, specific precautions are required in some particular cases. One important aspect of wound management is maintaining a go
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Cellulose-Based Nanosupports for Enzyme Immobilization,bility and sustainability of the enzyme, the use of nanosupports is aimed at increasing the surface area available for biocatalyst immobilization and improving the yields in bioconversions through better biocatalyst mobility and less diffusional problems. Among many nanomaterials for enzyme immobili
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Cellulose-Based Superabsorbent Hydrogels,inite environmental stimuli, i.e., temperature, pH, ionic strength, etc. Such stimuli-responsive behavior makes hydrogels attractive candidates for the design of “smart” devices, applicable in a variety of technological fields. In particular, when concerning either ecological or biocompatibility iss
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2510-3458 edical scientists and agricultural engineers engaged in research and development on absorbency, absorbent products and superabsorbent hydrogels. It can also be supportive for undergraduate and graduate students..978-3-319-76573-0
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