Search results for "Propylene"

showing 10 items of 285 documents

Acid‐Labile Amphiphilic PEO‐ b ‐PPO‐ b ‐PEO Copolymers: Degradable Poloxamer Analogs

2016

Poly ((ethylene oxide)-b-(propylene oxide)-b-(ethylene oxide)) triblock copolymers commonly known as poloxamers or Pluronics constitute an important class of nonionic, biocompatible surfactants. Here, a method is reported to incorporate two acid-labile acetal moieties in the backbone of poloxamers to generate acid-cleavable nonionic surfactants. Poly(propylene oxide) is functionalized by means of an acetate-protected vinyl ether to introduce acetal units. Three cleavable PEO-PPO-PEO triblock copolymers (Mn,total = 6600, 8000, 9150 g·mol(-1) ; Mn,PEO = 2200, 3600, 4750 g·mol(-1) ) have been synthesized using anionic ring-opening polymerization. The amphiphilic copolymers exhibit narrow molec…

Polymers and PlasticsBiodegradable Plastics02 engineering and technology010402 general chemistry01 natural sciencesPolyethylene Glycolschemistry.chemical_compoundPolymer chemistryAmphiphileMaterials ChemistrymedicineCopolymerSurface TensionPropylene oxideEthylene oxideHydrolysisOrganic ChemistryVinyl etherPoloxamer021001 nanoscience & nanotechnology0104 chemical sciencesMiniemulsionchemistryPolymerization0210 nano-technologymedicine.drugMacromolecular Rapid Communications
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Multiarm Polycarbonate Star Polymers with a Hyperbranched Polyether Core from CO2 and Common Epoxides

2017

Multiarm star copolymers, consisting of hyperbranched poly(ethylene oxide) (hbPEO) or poly(butylene oxide) (hbPBO) polyether copolymers with glycerol branching points as a core, and linear aliphatic polycarbonate arms generated from carbon dioxide (CO2) and epoxide monomers, were synthesized via a “core-first” approach in two steps. First, hyperbranched polyether polyols were prepared by anionic copolymerization of ethylene oxide or 1,2-butylene oxide with 8–35% glycidol with molecular weights between 800 and 389,000 g·mol–1. Second, multiple arms were grown via immortal copolymerization of CO2 with propylene oxide or 1,2-butylene oxide using the polyether polyols as macroinitiators and (R,…

Polymers and PlasticsEthylene oxideOrganic ChemistryGlycidolOxideEpoxide02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesInorganic Chemistrychemistry.chemical_compoundMonomerchemistryvisual_artPolymer chemistryMaterials ChemistryCopolymervisual_art.visual_art_mediumOrganic chemistryPropylene oxidePolycarbonate0210 nano-technologyMacromolecules
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Copolymerization Kinetics of Glycidol and Ethylene Oxide, Propylene Oxide, and 1,2-Butylene Oxide: From Hyperbranched to Multiarm Star Topology

2016

Copolymerization of established epoxide monomers with glycidol (G) is a key reaction to prepare branched or hyperbranched polyethers. The kinetics of the multibranching anionic ring-opening copolymerization of glycidol (a cyclic latent AB2 monomer) with ethylene oxide (EO), propylene oxide (PO), and 1,2-butylene oxide (BO; cyclic latent AB monomers), respectively, in dimethyl sulfoxide was studied. Online 1H NMR spectroscopy was employed for in situ monitoring of the individual monomer consumption during the entire course of the statistical copolymerization. Varying the counterion, both the cesium alkoxide and potassium alkoxide initiated copolymerization were studied and compared. From the…

Polymers and PlasticsEthylene oxideOrganic ChemistryOxideGlycidolEpoxide02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesInorganic Chemistrychemistry.chemical_compoundMonomerchemistryPolymer chemistryMaterials ChemistryCopolymerReactivity (chemistry)Propylene oxide0210 nano-technologyMacromolecules
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Water-Soluble “Poly(propylene oxide)” by Random Copolymerization of Propylene Oxide with a Protected Glycidol Monomer

2012

Hydrophilic, functional poly(propylene oxide) (PPO) copolymers were prepared by anionic random copolymerization of propylene oxide with the protected glycidyl derivative ethoxy ethyl glycidyl ether (EEGE). The monobenzyl-protected ethylene glycol initiator 2-(benzyloxy)ethanol was used to initiate the polymerization because it allows for the introduction of hydroxyl groups at both ends of the polymer chain. Acidic deprotection permitted selective removal of the acetal protecting groups in the chain or alternatively orthogonal deprotection of the terminal hydroxyl group by catalytic hydrogenation. A series of narrowly distributed hydroxyl-functional PPO copolymers (Mw/Mn < 1.07–1.25 g mol–1)…

Polymers and PlasticsOrganic ChemistryAcetalGlycidolInorganic Chemistrychemistry.chemical_compoundMonomerchemistryPolymerizationPolymer chemistryMaterials ChemistryAlkoxy groupCopolymerOrganic chemistryPropylene oxideEthylene glycolMacromolecules
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Calorimetric and Volumetric Investigations of the Effect of the Hydrophobicity of the Surfactant on the Binding between (Ethylene oxide)13-(propylene…

2004

The enthalpy and the volume of transfer (DeltaY(t)) of the unassociated (ethylene oxide)(13)-(propylene oxide)(30)-(ethylene oxide)(13) (L64) from water to the aqueous sodium alkanoate solutions as functions of the surfactant concentrations (m(S)) were determined at 298 K. The surfactants studied are sodium hexanoate, sodium heptanoate, sodium octanoate, sodium undecanoate, and sodium dodecanoate. As a general feature, for the short alkyl chain surfactants, DeltaY(t) describes an S-shaped curve in the range of m(S) analyzed whereas for the more hydrophobic surfactants the DeltaY(t) vs m(S) trends exhibit maxima which appear at ms values very close to the critical micellar concentration in w…

Polymers and PlasticsSodiumInorganic chemistryEnthalpyFLUORINATED ALCOHOLSchemistry.chemical_elementIONIC SURFACTANTSHEAT-CAPACITYTRIBLOCK COPOLYMERSInorganic Chemistrychemistry.chemical_compoundPulmonary surfactantMaterials ChemistryWATERMOLAR VOLUMESCarboxylatePropylene oxideAqueous solutionEthylene oxideOrganic ChemistrySECONDARY ALCOHOLSMICELLAR SOLUTIONSDODECYLTRIMETHYLAMMONIUM BROMIDEchemistryVolume (thermodynamics)THERMODYNAMIC PROPERTIES
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Temperature-controlled poly(propylene) glycol hydrophobicity on the formation of inclusion complexes with modified cyclodextrins. A DSC and ITC study.

2011

The study highlighted the main forces driving the formation of hydroxypropyl-cyclodextrins (HP-CDs) + poly(propylene) glycol 725 g mol(-1) inclusion complexes. The temperature parameter was chosen as the variable to modulate the hydrophobicity of the polymer, and consequently ITC experiments as functions of temperature as well as DSC measurements were done in a systematic way. The polymer is not included into HP-α-CD, it is strongly bound to HP-β-CD and it is floating in HP-γ-CD. The stability of the inclusion complexes is entropy controlled. The gain of the entropy is a unique result compared to the opposite literature findings for inclusion complexes based on polymers and CDs. This peculi…

PolymersEnthalpyGeneral Physics and AstronomyCalorimetrychemistry.chemical_compoundsymbols.namesakeDifferential scanning calorimetryOrganic chemistryPropylene oxidePhysical and Theoretical ChemistrySolubilitySettore CHIM/02 - Chimica Fisicachemistry.chemical_classificationBinodalCyclodextrinsTemperatureWaterPolymerchemistrySolubilityPropylene GlycolssymbolsPhysical chemistryThermodynamicsvan der Waals forceCalorimetry polymer Cyclodextrins supramoleculesEthylene glycolHydrophobic and Hydrophilic InteractionsPhysical chemistry chemical physics : PCCP
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Sumatriptan Succinate Transdermal Delivery Systems for The Treatment of Migraine

2007

We have successfully obtained sumatriptan transdermal systems with different polymer compositions: methyl cellulose (MC), polyvinyl pyrrolidone (PVP) and a polyvinyl pyrrolidone (PVP)-polyvinyl alcohol (PVA) mixture. The systems contained 1,2-propylenglycol (MC) or sorbitol as a plasticizer (PVP and PVP-PVA), methacrylate copolymer as an adhesive agent, and an occlusive liner. Azone (5%, w/w) was incorporated into all the systems as a percutaneous enhancer. Transdermal systems are thin, transparent and non-adhesive when in a dry state. The permeation of sumatriptan succinate across pig ear skin was studied using the systems prepared. The formulation with MC polymer produced a statistically …

PolymersSwineChemistry PharmaceuticalDrug CompoundingMigraine DisordersSkin AbsorptionPharmaceutical Sciencemacromolecular substancesAbsorption (skin)MethylcellulosePharmacologyAdministration CutaneousPermeabilityDosage formchemistry.chemical_compoundPolymethacrylic AcidsPlasticizersSumatriptan SuccinatemedicineAnimalsSorbitolTechnology PharmaceuticalVasoconstrictor AgentsSkinTransdermalDrug Carriersintegumentary systemSumatriptanChemistrytechnology industry and agriculturePlasticizerPovidoneAzepinesIontophoresisPermeationPropylene GlycolSerotonin Receptor AgonistsKineticsSumatriptanPolyvinyl AlcoholMethyl celluloseDiffusion Chambers CultureTissue AdhesivesNuclear chemistrymedicine.drugJournal of Pharmaceutical Sciences
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The New Life Of Exhausted Bentonite From The Grape Processing Industry: From Waste To Precious Resource To Produce Novel Raw Materials Enriched In Po…

Introduction: In an ever-growing perspective of circular economy, the development of conscious, sustainable and environmental-friendly strategies to recycle the waste products is the key point1. The exhausted bentonite, from the grape processing industries, could become a precious matrix to produce new pharmaceutical/cosmetic excipients enriched in functional polyphenols2. Materials &amp; Methods: The exhausted bentonite recovered after the fining process (supplied by Bono&amp;Ditta s.p.a., Campobello di Mazara TP, Italy) was stored at -20°C. Solid-liquid extractions on both freeze-dried and as-collected (wet) bentonite were carried out by using PEG200 or propylene glycol as solvents. The l…

PolyphenolCosmeceutical ExcipientPEG200Waste ProductWaste-to-market Approach.Settore CHIM/09 - Farmaceutico Tecnologico ApplicativoBentoniteExtractionGrape Processing IndustryPharmaceutical ExcipientPropylene Glycol
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In-line monitoring of the photooxidation behaviour of a PP/clay nanocomposite through creep measurements

2016

Abstract The photooxidation behaviour of a polypropylene/organomodified clay nanocomposite sample has been monitored by means of a new apparatus through the record of the creep curves measured while the sample is subjected to the contemporary action of temperature, tensile strength and UV radiation. The creep curves of the irradiated samples are higher than those of the non-irradiated samples and the curves diverge when the molecular weight begins to decrease because of the degradation. At the same the formation of carbonyl groups is observed. The creep curves of the non-irradiated and irradiated samples give, then, an immediate evaluation of the begin and of the development of the photooxi…

Polypropylene010407 polymersMaterials scienceNanocompositePolymers and PlasticsKineticsPP/clay02 engineering and technologyCreep021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciences0104 chemical scienceschemistry.chemical_compoundCreepchemistryMechanics of MaterialsUltimate tensile strengthMaterials ChemistryDegradation (geology)IrradiationComposite materialPhotooxidation0210 nano-technologyLine (formation)Polymer Degradation and Stability
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An Innovative Friction Stir Welding Based Technique to Produce Dissimilar Light Alloys to Thermoplastic Matrix Composite Joints

2016

Abstract Aluminum sheets can be joined to composite materials with different techniques. Each of them has advantages and weak points over the others. In literature, new techniques and patents are continuously developed to overcome these difficulties. In the paper a new Friction Stir Welding based approach is proposed to mechanically join AA6082-T6 to self-reinforced polypropylene. The aluminum sheet is pre-holed along both the sides of the weld line. A pinless tool generates the heat and pressure needed to activate back-extrusion of the composite. Joints have been produced with varying hole diameter and pitch. The mechanical resistance of the joint has been evaluated and the different failu…

Polypropylene0209 industrial biotechnologyMaterials scienceFSWComposite numberProcess (computing)chemistry.chemical_elementWeld line02 engineering and technologyFSW Dissimilar joint aluminum alloy Polypropylene.021001 nanoscience & nanotechnologyIndustrial and Manufacturing EngineeringDisplacement (vector)chemistry.chemical_compound020901 industrial engineering & automationchemistryArtificial IntelligenceAluminiumFriction stir weldingDissimilar jointaluminum alloyComposite materialPolypropylene0210 nano-technologyJoint (geology)
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