This Reprint compiles nine studies on sustainable, biocompatible, and biodegradable polymer systems, covering design, processing, functionalization, and applications from molecular to material scales. Key matrices include poly(lactic acid) (PLA) and poly(3-hydroxybutyrate) (PHB): PLA/PHB composites with inorganic filler balanced flame retardancy and biodegradation, while steam sterilization and recycling of 3D-printed PLA affected mechanical reliability and surface morphology. Solvent-free extrusion of isotactic PHB blends widened processing windows and improved ductility, enabling greener production. Natural and waste resources were valorized: biochar and artichoke cellulose enhanced PLA composites' thermal stability and stiffness; avocado seed starch films reinforced with nanocrystals improved mechanical and barrier properties and disintegrated rapidly in compost. Functional materials included cross-linked PMMA nanocomposites with melamine, CuO nanoparticles, and activated carbon, showing superior thermal stability and antibacterial behavior. Extracellular polymeric substances from Rhodococcus were analyzed as lipid- and polysaccharide-rich matrices supporting biofilm formation and hydrocarbon resistance. The Reprint concludes with a review of strategies for synthesizing and functionalizing biodegradable, biocompatible polymers, highlighting smart systems and sustainable uses in medicine, packaging, and environmental remediation. Collectively, these works advance eco-efficient, high-performance materials merging biodegradability, biocompatibility, and functionality.
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Hardcover. Condition: new. Hardcover. This Reprint compiles nine studies on sustainable, biocompatible, and biodegradable polymer systems, covering design, processing, functionalization, and applications from molecular to material scales. Key matrices include poly(lactic acid) (PLA) and poly(3-hydroxybutyrate) (PHB): PLA/PHB composites with inorganic filler balanced flame retardancy and biodegradation, while steam sterilization and recycling of 3D-printed PLA affected mechanical reliability and surface morphology. Solvent-free extrusion of isotactic PHB blends widened processing windows and improved ductility, enabling greener production. Natural and waste resources were valorized: biochar and artichoke cellulose enhanced PLA composites' thermal stability and stiffness; avocado seed starch films reinforced with nanocrystals improved mechanical and barrier properties and disintegrated rapidly in compost. Functional materials included cross-linked PMMA nanocomposites with melamine, CuO nanoparticles, and activated carbon, showing superior thermal stability and antibacterial behavior. Extracellular polymeric substances from Rhodococcus were analyzed as lipid- and polysaccharide-rich matrices supporting biofilm formation and hydrocarbon resistance. The Reprint concludes with a review of strategies for synthesizing and functionalizing biodegradable, biocompatible polymers, highlighting smart systems and sustainable uses in medicine, packaging, and environmental remediation. Collectively, these works advance eco-efficient, high-performance materials merging biodegradability, biocompatibility, and functionality. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. Seller Inventory # 9783725863761
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Hardcover. Condition: new. Hardcover. This Reprint compiles nine studies on sustainable, biocompatible, and biodegradable polymer systems, covering design, processing, functionalization, and applications from molecular to material scales. Key matrices include poly(lactic acid) (PLA) and poly(3-hydroxybutyrate) (PHB): PLA/PHB composites with inorganic filler balanced flame retardancy and biodegradation, while steam sterilization and recycling of 3D-printed PLA affected mechanical reliability and surface morphology. Solvent-free extrusion of isotactic PHB blends widened processing windows and improved ductility, enabling greener production. Natural and waste resources were valorized: biochar and artichoke cellulose enhanced PLA composites' thermal stability and stiffness; avocado seed starch films reinforced with nanocrystals improved mechanical and barrier properties and disintegrated rapidly in compost. Functional materials included cross-linked PMMA nanocomposites with melamine, CuO nanoparticles, and activated carbon, showing superior thermal stability and antibacterial behavior. Extracellular polymeric substances from Rhodococcus were analyzed as lipid- and polysaccharide-rich matrices supporting biofilm formation and hydrocarbon resistance. The Reprint concludes with a review of strategies for synthesizing and functionalizing biodegradable, biocompatible polymers, highlighting smart systems and sustainable uses in medicine, packaging, and environmental remediation. Collectively, these works advance eco-efficient, high-performance materials merging biodegradability, biocompatibility, and functionality. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. Seller Inventory # 9783725863761
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Hardcover. Condition: new. Hardcover. This Reprint compiles nine studies on sustainable, biocompatible, and biodegradable polymer systems, covering design, processing, functionalization, and applications from molecular to material scales. Key matrices include poly(lactic acid) (PLA) and poly(3-hydroxybutyrate) (PHB): PLA/PHB composites with inorganic filler balanced flame retardancy and biodegradation, while steam sterilization and recycling of 3D-printed PLA affected mechanical reliability and surface morphology. Solvent-free extrusion of isotactic PHB blends widened processing windows and improved ductility, enabling greener production. Natural and waste resources were valorized: biochar and artichoke cellulose enhanced PLA composites' thermal stability and stiffness; avocado seed starch films reinforced with nanocrystals improved mechanical and barrier properties and disintegrated rapidly in compost. Functional materials included cross-linked PMMA nanocomposites with melamine, CuO nanoparticles, and activated carbon, showing superior thermal stability and antibacterial behavior. Extracellular polymeric substances from Rhodococcus were analyzed as lipid- and polysaccharide-rich matrices supporting biofilm formation and hydrocarbon resistance. The Reprint concludes with a review of strategies for synthesizing and functionalizing biodegradable, biocompatible polymers, highlighting smart systems and sustainable uses in medicine, packaging, and environmental remediation. Collectively, these works advance eco-efficient, high-performance materials merging biodegradability, biocompatibility, and functionality. This item is printed on demand. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability. Seller Inventory # 9783725863761
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Buch. Condition: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - This Reprint compiles nine studies on sustainable, biocompatible, and biodegradable polymer systems, covering design, processing, functionalization, and applications from molecular to material scales. Key matrices include poly(lactic acid) (PLA) and poly(3-hydroxybutyrate) (PHB): PLA/PHB composites with inorganic filler balanced flame retardancy and biodegradation, while steam sterilization and recycling of 3D-printed PLA affected mechanical reliability and surface morphology. Solvent-free extrusion of isotactic PHB blends widened processing windows and improved ductility, enabling greener production. Natural and waste resources were valorized: biochar and artichoke cellulose enhanced PLA composites' thermal stability and stiffness; avocado seed starch films reinforced with nanocrystals improved mechanical and barrier properties and disintegrated rapidly in compost. Functional materials included cross-linked PMMA nanocomposites with melamine, CuO nanoparticles, and activated carbon, showing superior thermal stability and antibacterial behavior. Extracellular polymeric substances from Rhodococcus were analyzed as lipid- and polysaccharide-rich matrices supporting biofilm formation and hydrocarbon resistance. The Reprint concludes with a review of strategies for synthesizing and functionalizing biodegradable, biocompatible polymers, highlighting smart systems and sustainable uses in medicine, packaging, and environmental remediation. Collectively, these works advance eco-efficient, high-performance materials merging biodegradability, biocompatibility, and functionality. Seller Inventory # 9783725863761