A Literature Review of Poly(Lactic Acid)
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- Type
- article
- Published
- 2001-04-01
- Cited by
- 3,373
- References
- 105
- OpenAlex
- https://openalex.org/W40301670
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:8630569
Keywords
Crystallinity, Materials science, Crystallization, Rheology, Lactic acid
References
- Polylactones, 11. Cationic copolymerization of glycolide with L,L‐dilactide
- Structure and crystallization kinetics of poly(L-lactic acid)
- Thermal oxidative degradation of poly-lactic acid
- Polylactones, 19. Anionic polymerization of L‐lactide in solution
- Polylactides ‐ synthesis, characterization and medical application
- Polymerization of lactones, 12. Polymerization of L‐dilactide and L,D‐dilactide in the presence of potassium methoxide
- 1H‐ and 13C‐1H‐NMR spectra of stereocopolymers of lactide
- BIODEGRADABLE MATERIALS OF POLYLACTIDES, .4. POROUS BIOMEDICAL MATERIALS BASED ON MIXTURES OF POLYLACTIDES AND POLYURETHANES
- Polylactones, 8. Mechanism of the cationic polymerization of L,L‐dilactide
- Biodegradable polymers. 7th comm. On the mechanism of ring-opening polymerization of cyclic esters of aliphatic hydroxycarboxylic acids by means of different tin compounds
- Biodegradable Plastics and Polymers
- Macromolecular engineering of polylactones and polylactides. 5. Synthesis and characterization of diblock copolymers based on poly-ε-caprolactone and poly(L,L or D,L)lactide by aluminum alkoxides
- Technological and economic potential of poly(lactic acid) and lactic acid derivatives
- Highly crystalline as-polymerized poly(l-lactide)
- Crystallization and Microstructure of Poly(l-lactide-co-meso-lactide) Copolymers
- Properties and morphologies of poly(l-lactide): 1. Annealing condition effects on properties and morphologies of poly(l-lactide)
- Stereocomplex formation between enantiomeric poly(lactic acid). VIII. Complex fibers spun from mixed solution of poly(D‐lactic acid) and poly(L‐lactic acid)
- A method for estimating both the solubility parameters and molar volumes of liquids
- Effects of morphology, conformation and configuration on the IR and Raman spectra of various poly(lactic acid)s
- Stereocomplex formation between enantiomeric poly(lactic acid)s. 2. Stereocomplex formation in concentrated solutions
Cited by
- Preparation and Characterization of Composite Films Consisting of Poly(Lactic Acid) and Nanocrystalline Cellulose
- Biosynthesis of polyhydroxyalkanoates and its medical applications
- Chitosan based edible films and coatings: a review.
- Control of the Crystalline Morphology of Poly(l-lactide) by Addition of High-Melting-Point Poly(l-lactide) and Its Effect on the Distribution of Multiwalled Carbon Nanotubes.
- Multitask Imidazolium Salt Additives for Innovative Poly(l-lactide) Biomaterials: Morphology Control, Candida spp. Biofilm Inhibition, Human Mesenchymal Stem Cell Biocompatibility, and Skin Tolerance.
- UV protective poly(lactic acid)/rosin films for sustainable packaging.
- Photodegradation and Biodegradation of Poly(Lactic) Acid Containing Orotic Acid as a Nucleation Agent
- Ionic liquids as additives for biodegradable polylactic acid
- Rheological and mechanical behaviour of poly(lactic acid)/polyethylene glycol blends
- Porous Polymeric Bioresorbable Scaffolds for Tissue Engineering
- Thermomechanical evaluation of sisal-PLA composites
- Injection Moulding Processing Analysis of Polylactic Acid And Low-Density Polyethylene Plastic Spoon
- Design and characterisation of novel blends of poly(lactic acid)
- A backing device based on an embedded stiffener and retractable insertion tool for thin-film cochlear arrays
- Environmentally friendly packaging materials from renewable resources as alternatives for oil-based polymers
- Biocomposites including nano-scale dispersed phase and polymers from renewable resources
- Degradation of pure magnesium alloys in simulated body fluid
- Optimization of the processing of bio based polymer sustainable products
- Effects of electron radiation on properties of PLA
- Compréhension des phénomènes interfaciaux dans les composites à base de charges carbonate de calcium précipité : influence du traitement de surface et du procédé de mise en œuvre
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