Properties and morphologies of poly(l-lactide): 1. Annealing condition effects on properties and morphologies of poly(l-lactide)
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- Type
- article
- Published
- 1995-01-01
- Cited by
- 492
- References
- 19
- OpenAlex
- https://openalex.org/W1976882430
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:135815661
Keywords
Crystallinity, Annealing (glass), Materials science, Nucleation, Differential scanning calorimetry
References
- Biological and biomechanical performance of biomaterials: Editors: P. Christel, A. Meunier and A.J.C. Lee Elsevier Science Publishers, Amsterdam, 1986, pp 550, $124
- Biotechnology and Bioactive Polymers
- Preparative methods of polymer chemistry
- Structure and crystallization kinetics of poly(L-lactic acid)
- Degradation rates of oral resorbable implants (polylactates and polyglycolates): rate modification with changes in PLA/PGA copolymer ratios.
- In vitro and in vivo studies on bioabsorbable ultra-high-strength poly(L-lactide) rods.
- Biodegradable polymers for use in surgery — poly(glycolic)/poly(Iactic acid) homo and copolymers: 2. In vitro degradation
- Stereocomplex formation between enantiomeric poly(lactic acids). 9. Stereocomplexation from the melt
- General crystallization behaviour of poly(l-lactic acid)
- MORE ABOUT THE DEGRADATION OF LA/GA – DERIVED MATRICES IN AQUEOUS MEDIA
- Bioabsorption of polylactides with different molecular properties.
- Stereocomplex formation between enantiomeric poly(lactic acid)s. 6. Binary blends from copolymers
- Stereocomplex formation between enantiomeric poly(lactic acid)s. 3. Calorimetric studies on blend films cast from dilute solution
- Stereocomplex formation between enantiomeric poly(lactic acid)s. X. Binary blends from poly(D-lactide-CO-glycolide) and poly(L-lactide-CO-glycolide)
- Crystallization kinetics of poly(l-lactic acid)
- Poly(L-lactide): a long-term degradation study in vivo. Part III. Analytical characterization.
- Polylactic acid for surgical implants
- Dynamic mechanical and calorimetric analysis of compression-molded PLLA of different molecular weights : effect of thermal treatments
- Biomaterials and Clinical Applications
Cited by
- A Literature Review of Poly(Lactic Acid)
- Solvent removal from solution-cast films of biodegradable polymers
- Modulated properties of fully absorbable bicomponent meshes
- Effect of Laser Induced Crystallinity Modification on Degradation and Drug Release of Biodegradable Polymer
- Développement de polymères et composites alvéolaires bio-sourcés à base de Poly(Acide Lactique)
- Effects of crystallization and loading-rate on the mode I fracture toughness of biodegradable poly(lactic acid)
- Isotropically small crystalline lamellae induced by high biaxial-stretching rate as a key microstructure for super-tough polylactide film
- Poly(lactic acid)/polyoxymethylene blends: Morphology, crystallization, rheology, and thermal mechanical properties
- Structure-property relationship of polylactide/organoclay nanocomposites
- An atomic finite element model for biodegradable polymers. Part 2. A model for change in Young's modulus due to polymer chain scission.
- Highly improved crystallization behavior of poly(L-lactide) induced by a novel nucleating agent: substituted-aryl phosphate salts
- Characteristics and Applications of Poly(lactide)
- Study of annealing and orientation effects on physical properties of PLA based nanocomposite films
- Overview of Poly(lactic acid) (PLA) fibre
- Cinétique de cristallisation, structure et applications des stéréocomplexes de PLA
- Advances in helical stent design and fabrication thermal treatment and structural interaction studies of the simulated plaque-laden artery
- Effects of Thermal Process on the Impact Properties of PLA/PCL Polymer Blends
- Synthesis of high molecular weight linear and branched polylactides: A comprehensive kinetic investigation
- Crystallization behavior and crystallite morphology control of poly(L-lactic acid) through N, N′-bis(benzoyl)sebacic acid dihydrazide
- High-Resolution Solid-State NMR Characterization of Morphology in Annealed Polylactic Acid
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