Search results for "Biodegradable polymer"

showing 10 items of 82 documents

Processing and Properties of Biopolymer/Polyhydroxyalkanoates Blends

2011

In this paper, the processability and the performance of a biodegradable polymer, Mater-Bi, and of its blends with either a sample of poly (hydroxy alkanoates) (PHA) or with bacterial biomass containing PHAs were compared. Adding PHA or directly the biomass containing it allows improving the processability of the matrix. Moreover, the mechanical behaviour of the systems was compared considering two different preparation methods, namely compression and injection moulding. The injection moulded samples show poorer mechanical performances than those of the compression moulded systems. The impact strength significantly improves when PHA is added while it reduces when bacterial biomass is used i…

Environmental EngineeringMaterials sciencePolymers and PlasticsBiomassIzod impact strength testImpact testengineering.materialBiodegradable polymerPolyhydroxyalkanoatesMatrix (chemical analysis)Materials ChemistryengineeringInjection mouldingBiopolymerComposite materialBio-based polymers Polymer processing Mechanical properties Mater BiJournal of Polymers and the Environment
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Recycling of a starch-based biodegradable polymer

2002

A new starch-based polymeric system, ZI1OU from Novamont, mainly composed of starch and polycaprolactone, was reprocessed several times in an extruder to investigate the recyclability of this biodegradable polymer. A previous investigation of the thermomechanical degradation in a mixer has been also done. The degradation is mostly due to the thermal stress but the presence of the mechanical stress strongly increases the degradation kinetic. During melt processing two concurrent processes take place: the first is the degradation, i.e. the breaking and shortening of polymeric chains, mostly occurring in the PCL phase; the second is the formation of some crosslinked structure in the starch pha…

Extrusion mouldingMaterials sciencePolymers and PlasticsMaterBi biodegradable polymer recycling processingStarchOrganic ChemistryPlastics extrusionmacromolecular substancesCondensed Matter PhysicsBiodegradable polymerchemistry.chemical_compoundSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialichemistryPolycaprolactoneMaterials ChemistryDegradation (geology)ExtrusionPolymer blendComposite materialMacromolecular Symposia
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DRUG DELIVERY FROM MUCOADHESIVE DISKS BASED ON A PHOTO-CROSS-LINKABLE POLYASPARTAMIDE DERIVATIVE

2005

Disks for local delivery of amoxicillin to the buccal or gastric cavity were prepared using as starting polymer a polyaspartamide derivative. In particular, α,β-poly(N-2-hydroxyethyl)-DL-aspartamide (PHEA) was derivatized with glycidyl methacrylate (GMA) in order to synthesize PHG, a photo-cross-linkable and biodegradable polymer that gives rise to the formation of a chemical hydrogel (PHG-UV) by UV irradiation. This hydrogel was shaped as disks whose mucoadhesive properties have been confirmed by swelling measurements in phosphate buffer/citric acid solution at pH 7.0 in the presence of various concentrations of mucin. Swelling ability of PHG-UV disks was also evaluated in simulated saliva…

Glycidyl methacrylateMaterials sciencePolyaspartamide Glycidyl methacrylate Hydrogels Mucoadhesion Amoxicillin Drug releasedigestive oral and skin physiologyPharmaceutical ScienceBiodegradable polymerDosage formchemistry.chemical_compoundchemistrySettore CHIM/09 - Farmaceutico Tecnologico ApplicativoDrug deliveryPolymer chemistrySelf-healing hydrogelsmedicineMucoadhesionSwellingmedicine.symptomAntibacterial agentNuclear chemistry
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New approach for synthesis of poly(ethylglyoxylate) using Maghnite-H + , an Algerian proton exchanged montmorillonite clay, as an eco-catalyst

2017

International audience; In this works, we have explored a new method for a green synthesis of poly(ethylglyoxylate) (PEtG). This method consists on using a montmorillonite clay called Maghnite-H+ as an eco-catalyst to replace triethylamine which is toxic. Cationic polymerization experiments are performed in bulk conditions at three temperatures (-40 degrees C, 25 degrees C, 80 degrees C) and in THF solutions at room temperature (25 degrees C). At 25 degrees C, an optimum ratio of 5 wt% of catalyst leads to molar masses up to 22000 g/mol in THF solutions. Polymerizations in bulk conditions lead to slightly lower masses than experiments conducted in THF solutions. However, bulk polymerization…

Green chemistryThermogravimetric analysisMaterials scienceepsilon-caprolactonePolymers and PlasticsBulk polymerizationMaghnite-H+ring-opening polymerization02 engineering and technologyEthylglyoxylate010402 general chemistry7. Clean energy01 natural sciencesalcoholschemistry.chemical_compoundbiodegradable plasticsMaterials Chemistrycationic polymerizationionic polymerizationsThermal stabilityComposite materialsheet silicatespoly(methyl glyoxylate)degradationchemistry.chemical_classificationMolar masscopolymergreen chemistrybis-macromonomersCationic polymerizationbiodegradable polymerGeneral ChemistryPolymer021001 nanoscience & nanotechnology0104 chemical sciences[ CHIM.POLY ] Chemical Sciences/PolymersMontmorillonite[CHIM.POLY]Chemical Sciences/PolymersChemical engineeringchemistryCeramics and Compositeseco-catalyst0210 nano-technology
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Heat-Resistant Fully Bio-Based Nanocomposite Blends Based on Poly(lactic acid)

2013

Poly(lactic acid) (PLA) is melt mixed with polyamide 11 (PA11) to obtain a heat-resistant fully bio-based blend with PLA as the dominant component. The goal is achieved by adding small amounts of organoclay (OMMT), which is used to manipulate the blend microstructure. The selective positioning of the OMMT inside the PA11 and at the PLA/PA11 interface turns the blend morphology from drop/matrix into co-continuous at high PLA content (70 wt%). The OMMT-rich PA11 framework that interpenetrates the major PLA phase effectively contributes to bear stresses, and the nanocomposite blend keeps its structural integrity up to ≈160 °C, i.e., about 100 °C above the PLA glass transition.

Heat resistantNanocompositeMaterials sciencenanocompositePolymers and PlasticsBIOPOLYMERSGeneral Chemical EngineeringDrop (liquid)Organic Chemistrybiodegradable polymerMicrostructureNANOCOMPOSITESLactic acidchemistry.chemical_compoundPOLYMER BLENDSchemistryPolyamideMaterials ChemistryPLAOrganoclayComposite materialGlass transitionMacromolecular Materials and Engineering
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Influence of photo-oxidation on the performance and soil degradation of oxo- and biodegradable polymer-based items for agricultural applications

2021

Abstract The examination of the aging behavior of polymers, blends, composites, items, etc. under different environmental conditions is a priority issue for assessing the possible applications and establishing the lifetime. In agriculture, plastic items (mulch films, irrigation tubes, etc.) are widely used and subjected to solar UV exposure that can induce photo-oxidation on macromolecular chains. Therefore, weathering under outdoor conditions and accelerated degradation tests are performed for simulating aging processes during the lifetime of materials and select appropriate stabilizers to be used. In the last decades, oxo- and biodegradable polymers have been investigated and used in agri…

IrrigationMaterials sciencePolymers and PlasticsPro-Oxidant AdditivesWeathering02 engineering and technology010402 general chemistry01 natural sciencesSoil retrogression and degradationMaterials ChemistryOxo-Degradable polymersPhotooxidationchemistry.chemical_classificationPolymerBiodegradation021001 nanoscience & nanotechnologyCondensed Matter PhysicsPulp and paper industryBiodegradable polymerUV Artificial Weathering0104 chemical sciencesBiodegradabilitychemistryMechanics of MaterialsDegradation (geology)0210 nano-technologyMulchBioplastics
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Effect of the remaining lanthanide catalysts on the hydrolytic and enzymatic degradation of poly-(ε-caprolactone)

2003

Poly-(e-caprolactone) is a biodegradable polymer, which can be used for both medical and environmental applications. Due to its multiple applications the synthesis of such a polymer has been attracting an increasing attention in the past few decades. In our work, the polymers were synthesised by bulk polymerisation, using different lanthanide halides as initiators. The lanthanide derivatives are known as very active catalysts in the ring-opening polymerisation of cyclic esters. Moreover, they are not toxic in comparison of catalysts, which are usually used for this synthesis. In this paper, the influence of the lanthanides on both the hydrolytic and enzymatic degradation of the PCL obtained…

Lanthanidechemistry.chemical_classificationMaterials sciencePolymers and PlasticsOrganic Chemistrychemistry.chemical_elementPolymerCondensed Matter PhysicsChlorideBiodegradable polymerSamariumchemistry.chemical_compoundPolymerizationchemistryLanthanide trifluoromethanesulfonatesMaterials ChemistrymedicineOrganic chemistryCaprolactonemedicine.drugMacromolecular Symposia
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Five-Year Results of the Bioflow-III Registry:Real-World Experience with a Biodegradable Polymer Sirolimus-Eluting Stent

2018

Abstract Purpose We aimed to assess long-term safety and performance of the Orsiro sirolimus-eluting coronary stent with biodegradable polymer in a large unselected population and in pre-specified subgroups. Methods BIOFLOW-III is a prospective, multicenter, international, observational registry with follow-up visits scheduled at 6 and 12 months, and at 3 and 5 years ( NCT01553526 ). Results 1356 patients with 1738 lesions were enrolled. Of those, 392 (28.9%) declined to participate in the study extension from 18 months to 5 years, 37 (2.7%) withdrew consent, and 89 (6.6%) were lost to follow-up. At 5-years, Kaplan-Meier estimates of target lesion failure, defined as a composite of cardiac …

MaleTarget lesionTime Factorsmedicine.medical_treatmentMyocardial InfarctionCoronary Artery Disease030204 cardiovascular system & hematology0302 clinical medicineRecurrenceRisk FactorsAbsorbable ImplantsBiodegradable polymerProspective StudiesRegistries030212 general & internal medicineMyocardial infarctionAngioplasty Balloon Coronaryeducation.field_of_studyDiabetesDrug-Eluting StentsGeneral MedicineCoronary artery stenosisMiddle AgedTreatment OutcomeDrug-eluting stentFemaleCardiology and Cardiovascular Medicinemedicine.medical_specialtyPolyestersPopulationHybrid stentProsthesis Design03 medical and health sciencesDiabetes mellitusCoronary stentmedicineHumanseducationAgedSirolimusbusiness.industryCoronary ThrombosisStentCardiovascular Agentsmedicine.diseaseConfidence intervalSurgeryCoronary OcclusionChronic DiseaseDrug-eluting stentbusiness
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Physical properties of green composites based on poly-lactic acid or Mater-Bi® filled with Posidonia Oceanica leaves

2018

Abstract This work focuses on the evaluation of Posidonia Oceanica leaves as effective reinforcing agent for ecofriendly, fully biodegradable polymer composites. Posidonia leaves were washed, ground and sieved in order to achieve two different size distributions and aspect ratios. They were then added to either a stiff or a ductile biodegradable polymer matrix, respectively poly-lactic acid (PLA) and MaterBi® (MB), at two different filler contents (10 wt% and 20 wt%). The materials were fully characterized from a spectroscopic, morphological, rheological, and mechanical point of view. In particular, the outcomes of tensile tests were statistically analyzed by using a Full Factorial Design i…

MaterBiToughnessFiller (packaging)Materials scienceCeramics and Composite02 engineering and technology010402 general chemistry01 natural sciencesPosidonia OceanicaUltimate tensile strengthComposite materialElastic moduluschemistry.chemical_classificationbiologyFull factorialPolymerFactorial experiment021001 nanoscience & nanotechnologybiology.organism_classificationBiodegradable polymer0104 chemical sciencesSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialichemistryMechanics of MaterialsPosidonia oceanicaCeramics and CompositesPLAGreen composite0210 nano-technologyComposites Part A: Applied Science and Manufacturing
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Influence of polymer content in Ca-deficient hydroxyapatite–polycaprolactone nanocomposites on the formation of microvessel-like structures

2009

Calcium phosphate (CaP) ceramics are widely used in bone tissue engineering due to their good osteoconductivity. The mechanical properties of CaP can be modified by the addition of small volume fractions of biodegradable polymers such as polycaprolactone (PCL). Nevertheless, it is also important to evaluate how the polymer content influences cell-material or cell-cell interactions because of potential consequences for bone regeneration and vascularization. In this study we assessed the general biocompatibilty of Ca-deficient hydroxyapatite (CDHA)-PCL disks containing nominally 11 and 24% polycaprolactone using human umbilical vein endothelial cells and human primary osteoblasts. Confocal mi…

Materials scienceAngiogenesisPolyestersBiomedical EngineeringNeovascularization Physiologicchemistry.chemical_elementBiocompatible Materialsmacromolecular substancesCalciumBiochemistryUmbilical veinNanocompositeslaw.inventionBiomaterialschemistry.chemical_compoundConfocal microscopylawHumansBone regenerationMolecular BiologyMicrovesselCell ProliferationOsteoblastsReverse Transcriptase Polymerase Chain Reactiontechnology industry and agricultureEndothelial CellsGeneral MedicineAlkaline Phosphataseequipment and suppliesmusculoskeletal systemBiodegradable polymerCoculture TechniquesDurapatitechemistryMicrovesselsPolycaprolactoneCalciumBiomarkersBiotechnologyBiomedical engineeringActa Biomaterialia
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