Water-Soluble and Insoluble Polymers and Biopolymers for Biomedical, Environmental, and Biological Applications

The use of polymers in biological applications is defined by the interactions promoted between living organisms and polymeric chains, which are generally associated with the polymers' hydrophilic and hydrophobic behaviors. However, these water-friendly structures are also very useful for other...

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Bibliographic Details
Other Authors: Stadler, Florian J. (Editor), García-Peñas, Alberto (Editor)
Format: Electronic Book Chapter
Language:English
Published: Basel MDPI - Multidisciplinary Digital Publishing Institute 2022
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Online Access:DOAB: download the publication
DOAB: description of the publication
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520 |a The use of polymers in biological applications is defined by the interactions promoted between living organisms and polymeric chains, which are generally associated with the polymers' hydrophilic and hydrophobic behaviors. However, these water-friendly structures are also very useful for other applications, such as the adsorption of pollutants from sewage water. The modulation of the final properties of water-soluble and insoluble polymers tends to define the spectra of features associated with their final applications. 
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650 7 |a Biology, life sciences  |2 bicssc 
653 |a poly(lactic acid) 
653 |a water emulsions 
653 |a water dispersions 
653 |a film formation 
653 |a waterborne coating 
653 |a microcapsule 
653 |a self-healing 
653 |a core material 
653 |a clad ratio 
653 |a poly(vinyl alcohol) 
653 |a glycerol 
653 |a microplastics 
653 |a biodegradation 
653 |a toxicity 
653 |a marine water 
653 |a thermoresponsive polymers 
653 |a hydrophobic transitions 
653 |a lower critical solution temperature 
653 |a functionalized materials 
653 |a contact angle 
653 |a drug delivery 
653 |a PBCA 
653 |a molecular weights 
653 |a biodegradable polymers 
653 |a NMR 
653 |a Advanced Polymer Chromatography™ 
653 |a chitosan 
653 |a sustainable development 
653 |a circular economy 
653 |a biopolymers 
653 |a n/a 
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