Search results for "Polymers"

showing 10 items of 3567 documents

Comparative Investigation on the Soil Burial Degradation Behaviour of Polymer Films for Agriculture before and after Photo-Oxidation

2020

Polymer films based on biodegradable polymers, polyethylene (PE) and modified PE with oxo-degradable additive were prepared by film blowing. Carbon black (1%) was added to all the films. Commercial biodegradable Ecovio&reg

polyethyleneEcovio<sup>®</sup>Materials sciencemulch filmsPolymers and Plasticspolymer degradation02 engineering and technologyMater-Bi<sup>®</sup>010402 general chemistry01 natural sciencesArticlelcsh:QD241-441chemistry.chemical_compoundPolymer degradationlcsh:Organic chemistrySoil retrogression and degradationbiodegradable polymers; mulch films; soil burial test; Ecovio®; Mater-Bi®; polylactide; poly(butyleneadipate-co-butyleneterephtalate); polyethylene; polymer degradation; photooxidationchemistry.chemical_classificationsoil burial testGeneral ChemistryPolymerCarbon blackPolyethyleneBiodegradation021001 nanoscience & nanotechnologyBiodegradable polymerphoto-oxidation0104 chemical sciencesSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialichemistryChemical engineeringbiodegradable polymerspolylactidepoly(butyleneadipate-<i>co</i>-butyleneterephtalate)Biodegradable polymers Ecovio® Mater-Bi® Mulch films Photo-oxidation Poly(butyleneadipate-co-butyleneterephtalate) Polyethylene Polylactide Polymer degradation Soil burial testDegradation (geology)Ecovio®poly(butyleneadipate-co-butyleneterephtalate)0210 nano-technologyMater-Bi®Polymers
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Naturally Occurring Oxazole Structural Units as Ligands of Vanadium Catalysts for Ethylene-Norbornene (Co)polymerization

2021

1,3-Oxazole and 4,5-dihydro-1,3-oxazole are common structural motifs in naturally occurring peptides. A series of vanadium complexes were synthesized using VCl3(THF)3 and methyl substituted (4,5-dihydro-1,3-oxazol-2-yl)-1,3-oxazoles as ligands and analyzed using NMR and MS methods. The complexes were found to be active catalysts both in ethylene polymerization and ethylene-norbornene copolymerization. The position of methyl substituent in the ligand has considerable impact on the performance of (co)polymerization reaction, as well as on the microstructure, and thus physical properties of the obtained copolymers.

polyethyleneEthyleneSubstituentVanadiumchemistry.chemical_elementTP1-1185010402 general chemistry01 natural sciencesCatalysisCatalysischemistry.chemical_compoundPolymer chemistryCopolymervanadium catalystPhysical and Theoretical ChemistryQD1-999polyethylene; norbornene copolymers; oxazole ligand; vanadium catalyNorborneneOxazole010405 organic chemistryChemical technology0104 chemical sciencesChemistrychemistryPolymerizationnorbornene copolymersoxazole ligandCatalysts
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Titanium and Vanadium Catalysts with 2-Hydroxyphenyloxazoline and Oxazine Ligands for Ethylene-Norbornene (co)Polymerization

2019

A series of titanium and vanadium complexes with oxazoline 2-(4,5-dihydro-1,3-oxazol-2-yl)phenol (L1), 2-(4-methyl-4,5-dihydro-1,3-oxazol-2-yl)phenol (L2), and oxazine 2-(5,6-dihydro-4H-1,3-oxazin-2-yl)phenol (L3) ligands were synthesized, and their structures were determined by NMR and MS methods as (L)2MtCl2. The vanadium complexes were found to be highly active in ethylene (7300 kgPE/(molV&middot

polyethyleneEthyleneoxazine ligandVanadiumchemistry.chemical_elementPolyethyleneCatalysisCatalysischemistry.chemical_compoundchemistryPolymerizationnorbornene copolymersPolymer chemistryCopolymervanadium catalystMolar mass distributionPhysical and Theoretical Chemistryoxazole ligandNorborneneCatalysts
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The role of the matrix-filler affinity on morphology and properties of polyethylene/clay and polyethylene/ compatibilizer/clay nanocomposites drawn f…

2009

In this work the structural variations and mechanical performance of polyethylene/clay nanocomposite drawn fibres, also in the presence ofcompatibilizer, such as a commercial maleic anhydride grafted polyethylene, PEgMA, was studied. In the isotropic state both systems show intercalated morphology.After spinning and cold drawing, by adding the nanoparticles, the tensile strength as a function of the draw ratio increases and this rise is more pronounced for the filled compatibilized system. The reduction of the elongation at break, on the contrary, is about the same for all the examined samples. The orientation of the macromolecules, evaluated by measurements of the birefringence and calorim…

polyethyleneFiller (packaging)Materials scienceNanocompositeMorphology (linguistics)Polymers and PlasticsGeneral Chemical EngineeringPolyethyleneMatrix (geology)clay nanocompositechemistry.chemical_compoundchemistrydrawn fibersPhysical and Theoretical ChemistryComposite materiale-Polymers
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A supported titanium postmetallocene catalyst: Effect of selected conditions on ethylene polymerization

2011

Ethylene polymerization with a titanium complex [N,N-ethylenebis(3-methoxysalicylideneiminato)titanium dichloride] immobilized on the magnesium support with the formula MgCl2(THF)0.32(Et2AlCl)0.36 was studied. In particular, the effects of polymerization temperature, monomer pressure, and polymerization time on the activity of the catalyst and on the polyethylene properties (molecular weight and its distribution, melting point, crystallinity, and bulk density) were evaluated. The findings of investigations prove that the studied supported titanium catalyst is highly active in ethylene polymerization, and its activity increases with increasing temperature and monomer pressure. Moreover, stab…

polyethyleneMaterials sciencePolymers and PlasticsBulk polymerizationsupportsmelting pointtechnology industry and agriculturechemistry.chemical_elementSolution polymerizationGeneral Chemistrymolecular weight distributionPolyethylenecatalystsSurfaces Coatings and Filmschemistry.chemical_compoundChain-growth polymerizationchemistryPolymerizationPolymer chemistryMaterials ChemistryPrecipitation polymerizationCoordination polymerizationTitaniumJournal of Applied Polymer Science
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Competition between chain scission and branching formation in the processing of high-density polyethylene: effect of processing parameters and of sta…

2009

Two samples of high-density polyethylene with different molecular weight were processed in a batch mixer and the rheological and structural properties were investigated. In particular, the effect of different processing parameters and the eventual presence of different stabilizers were evaluated. Actually, two reactions may occur during processing: branching/crosslinking or chain scission. The results indicate that when the processing conditions promote a scarce mobility of the macromolecular chains (lower temperatures, lower mixing speed, and higher molecular weight), branching is more favored than chain scission. On increasing the mobility of the chain (higher temperature, higher mixing s…

polyethyleneMaterials sciencePolymers and PlasticsIntrinsic viscositychain scissionConcentration effectmacromolecular substancesGeneral ChemistryPolyethyleneBranching (polymer chemistry)stabilizationchemistry.chemical_compoundSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiChemical engineeringchemistryRheologyPolymer chemistrybranchingMaterials ChemistrypolyehtyleneThermal stabilityHigh-density polyethyleneMelt flow indexdegradation
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On the effectiveness of different additives and concentrations on the re-building of the molecular structure of degraded polyethylene

2006

Mechanical recycling is an easy and economic way to re-use plastic waste as secondary materials, but, in general, their properties are worse with respect to the reclaimed materials and the virgin polymer. The aim of this work was to study the effect of concentration and reaction kinetics of two additives, an ethylene-co-glycidyl methacrylate (Lotader) and a hydroxylamine derivative (CGX), in the re-building of a degraded polyethylene. CGX is a nitroxyl radical generator able to form branching in polyolefins while the epoxy groups of Lotader can react with the functional groups present in the recycled polyethylene. The results indicate that the CGX has a higher reaction rate than Lotader, pr…

polyethyleneReaction mechanismreactive processingelongational viscosityPolymers and PlasticsConcentration effectrecyclingmechanical propertiesBranching (polymer chemistry)Reaction ratechemistry.chemical_compoundMaterials ChemistryOrganic chemistrychemistry.chemical_classificationPolymerEpoxyPolyethylenere-buildingCondensed Matter PhysicsSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialichemistryChemical engineeringMechanics of Materialsvisual_artvisual_art.visual_art_mediumPolymer blendPolymer Degradation and Stability
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Transition metal complexes of tetradentate and bidentate Schiff bases as catalysts for ethylene polymerization: Effect of transition metal and cocata…

2009

This article compares catalytic performance of ethylene polymerization in similar polymerization conditions of transition metal complexes having two ligands [O,N] (phenoxy-imine) and having one tetradentate ligand [O,N,N,O] (salphen or salen). It is shown that the activity of both complex types as well as the product properties depend in the same way on the type of central metal in the complex and on the cocatalyst used. Although the type of ligand has some effect on the catalyst activity, yet it does not control the properties of the obtained products. The vanadium and zirconium complexes, irrespective of the cocatalyst used, yield linear polyethylene with high molecular weight (a few hund…

polyethyleneZiegler‐Natta polymerizationDenticitySchiff basePolymers and PlasticsChemistryLigandOrganic ChemistryVanadiumchemistry.chemical_elementPolyethyleneCatalysischemistry.chemical_compoundpostmetallocene catalystTransition metalPolymerizationPolymer chemistryMaterials ChemistrySchiff basesoligomersJournal of Polymer Science. Part A : Polymer Chemistry
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Effect of sample preparation on gel permeation chromatography results of determination of molecular weight of polyethylene obtained with using of zir…

2003

Molecular weights of polyethylene (PE) obtained with using of zirconocene catalyst activated with large excess of methylaluminoxane (MAO) were determined by gel permeation chromatography (GPC) method. It was found that repeatability of the measurements is strongly influenced by MAO remained in PE samples as well as time of sample keeping in the apparatus (dissolution + measurement time) at temp. 142 °C. A method of MAO removing from PE samples, before GPC measurement, based on additional washing of the sample with HF in methanol solution has been proposed. This modification leads to better both authenticity and repeatability of the results. Studies on the influence of time of sample keeping…

polyethylenechemistry.chemical_classificationChromatographyPolymers and PlasticsChemistryGeneral Chemical Engineeringgel permeation chromatographyMethylaluminoxanemethylaluminoxanesamples preparationsPolymerzirconocene catalystPolyethyleneCatalysisGel permeation chromatographychemistry.chemical_compoundMaterials ChemistrySample preparationMethanolAluminoxanePolimery
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Effect of immobilization of titanocene catalyst in aralkyl imidazolium chloroaluminate media on performance of biphasic ethylene polymerization and p…

2012

1-(2-Phenylethyl)-3-methylimidazolium and 1-benzyl-3-methylimidazolium chloroaluminates, [Ph-C2mim][AlCl4] and [Bzlmim][AlCl4], were applied as media of the Cp2TiCl2 catalyst for biphasic ethylene polymerization. The studied aralkyl ionic liquids ensure greater stability of the catalyst at higher temperatures and more regular morphology of the produced polyethylene than analogous 1-n-alkyl-3-methylimidazolium chloroaluminates. The alkylaluminium compound participates in the termination reaction of the polymer chain. The catalyst is stable and enables recycling of the ionic liquid phase in the consecutive polymerization reactions. The [Ph-C2mim][AlCl4] ionic liquid and AlEt2Cl alkylaluminium…

polyethylenechemistry.chemical_classificationMaterials scienceChemistry(all)Polymers and PlasticsDispersityGeneral ChemistryPolymermetallocene catalystPolyethylenePost-metallocene catalystCondensed Matter PhysicsCatalysischemistry.chemical_compoundCrystallinityPolymerizationchemistryPolymer chemistryIonic liquidMaterials Chemistryionic liquidPolymer Bulletin
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