Search results for "Polymers"

showing 10 items of 3567 documents

Testing of a model for the non linear electric behavior of polymeric materials

1980

Some experimental results relative to a molten polymer (a commercial polyisobutylene) in d.c. and a.c. tests are presented.

chemistry.chemical_classificationNonlinear systemColloid and Surface ChemistryMaterials sciencePolymers and PlasticschemistryMaterials ChemistryPolymerPhysical and Theoretical ChemistryComposite materialColloid and Polymer Science
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Diene/olefin/polar monomer copolymerisation: unprecedented functional polymers from a rare earth catalyst

2002

An ansasamarocene allyl system is an efficient initiator which polymerises 1,3-dienes, copolymerises dienes and long-chain α-olefins or α,ω-dienes to give functionalisable polymers. It also polymerises caprolactone and allows the controlled diblock copolymerisation of isoprene or isoprene/ α-olefin copolymer and caprolactone.

chemistry.chemical_classificationOlefin fiberMaterials sciencePolymers and PlasticsDieneOrganic ChemistryPolymerchemistry.chemical_compoundMonomerchemistryPolymer chemistryMaterials ChemistryCopolymerOrganic chemistryFunctional polymersCaprolactoneIsoprenePolymer International
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Olefin Polymerisation Catalysts

2002

Polyolefins, which are products of polymerisation of unsaturated hydrocarbons of the olefin series, have a molecular weight in the range from several thousands to several millions. Depending on the type of monomer and method and mechanism of polymerisation the resulting polyolefins may differ in their structure and molecular weight. They can be used in many applications, for example as constructional plastics and in packaging, fibres, rubbers, and also as additives to control the viscosity of motor oils(1). As regards their scale of production polyolefins occupy the top position among mass-produced polymers(2).

chemistry.chemical_classificationOlefin fiberMaterials sciencePolymers and PlasticsPolymer scienceGeneral Chemical EngineeringOrganic ChemistryPolymerPolyethyleneHeterogeneous catalysischemistry.chemical_compoundMonomerchemistryPolymerizationMaterials ChemistryZiegler–Natta catalystMetalloceneInternational Polymer Science and Technology
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New Viscoelastic Materials Obtained by Insertion of anα-Olefin in atrans-Polyisoprene Chain with a Single-Component Organolanthanide Catalyst

2001

Copolymerisation of isoprene with C 6 -C 18 a-olefins by a single component organolanthanide catalyst affords poly(trans-1,4-isoprene) containing 6-10% of inserted olefin. The mechanical properties of highly crystalline transpolyisoprene are dratically modified after insertion of the alkyl chains, leading to quasi-amorphous viscoelastic materials.

chemistry.chemical_classificationOlefin fiberMaterials sciencePolymers and PlasticsSingle componentOrganic ChemistryCondensed Matter PhysicsViscoelasticityCatalysischemistry.chemical_compoundchemistryChain (algebraic topology)Polymer chemistryMaterials ChemistryOrganic chemistryPhysical and Theoretical ChemistryAlkylIsopreneMacromolecular Chemistry and Physics
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The effect of TMEDA on the kinetics of the anionic polymerization of methyl methacrylate in tetrahydrofuran using lithium as counterion

2000

The kinetics of the anionic polymerization of methyl methacrylate in presence of N,N,N', -tetramethylethylenediamine (TMEDA) in THF are investigated using 1,1-diphenyl-hexyllithium as initiator in a temperature range between -20°C and 0°C in a flow-tube reactor. The rate constants of propagation determined in the presence of TMEDA are compared to those obtained in the absence of a chelating agent. For propagation, the reaction order with respect to active centers is found to be 0.5 in both cases which indicates that the chelation of the lithium cation does not effectively perturb the aggregation of the enolate ion pair. Both the rate constants of propagation via non-aggregated ion pairs, k …

chemistry.chemical_classificationOrder of reactionPolymers and PlasticsOrganic ChemistrySolution polymerizationTetramethylethylenediamineCondensed Matter Physicschemistry.chemical_compoundAnionic addition polymerizationReaction rate constantchemistryPolymer chemistryMaterials ChemistryOrganic chemistryPhysical chemistryPhysical and Theoretical ChemistryCounterionTetrahydrofuranEquilibrium constant
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Stabilisation of LDPE cross-linked in the presence of peroxides III. Mass spectrometric study of chemical changes taking place in the n-octadecane–di…

2000

Abstract An attempt was made to identify the products of the reaction between dicumyl peroxide and Irganox 1081, carried out in n -octadecane (saturated hydrocarbon), in conditions of fast decomposition of the peroxide (180°C, 5 min). Mass spectrometry (MS) was employed to find m/z values of molecular and fragment ions in analyses of the components ( n -octadecane, dicumyl peroxide, Irganox 1081) and of the following systems: n -octadecane–dicumyl peroxide, n -octadecane–Irganox 1081 and n -octadecane–dicumyl peroxide–Irganox 1081, after holding them at a temperature of 180°C for 5 min. The tendency of sulphur in Irganox 1081 to oxidise, specifically in the presence of dicumyl peroxide, was…

chemistry.chemical_classificationOrganic peroxidePolymers and PlasticsChemistryConcentration effectCondensed Matter PhysicsMass spectrometryDecompositionPeroxidechemistry.chemical_compoundLow-density polyethyleneHydrocarbonOctadecaneMechanics of MaterialsPolymer chemistryMaterials ChemistryPolymer Degradation and Stability
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Post-Polymerization Modification

2012

The synthesis of functional polymers has been enriched dramatically by post-polymerization modifications. Even though it represents a synthetically very appealing approach, different synthetic concepts of organic reactions are utilized in polymer science for the synthesis of architecturally well-defined multifunctional polymers. The different classes of reactions that provide the synthetic polymer chemist with tools of unprecedented precision, thereby opening the doors for materials synthesis in an interdisciplinary world, will be summarized.

chemistry.chemical_classificationOrganic reactionChemistryClick chemistryOrganic chemistryNanotechnologyPolymerFunctional polymersPost polymerizationSynthetic polymer
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Reactions Occurring during the Melt Mixing of Nylon 6 and Oxazoline−Cyclophosphazene Units

2009

Specific reactions of amino and carboxyl end groups of Nylon 6 with the reactive oxazoline groups belonging to a cyclophosphazene compound (referred as CP20XA) were carried out at 240 °C for different times, under inert atmosphere. Ny6 polymers terminated with one specific reactive chain end (-COOH or NH2) were reacted with different amounts of CP20XA to study the kinetic order of the reactions. All Ny6-CP20XA reacted products soluble in trifluoroethanol (TFE) were well characterized by MALDI-TOF MS, FT-IR and ( 1H and 13C) NMR techniques. The MALDI-TOF results show that the oxazoline rings react with the carboxyl chain ends of Ny6 following second-order kinetics. The reactions with amino c…

chemistry.chemical_classificationOxazolineReaction mechanismPolymers and PlasticsOrganic ChemistryKineticsSide reactionPolymerOxazolineReactive BlendingInorganic Chemistrychemistry.chemical_compoundEnd-groupSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiNylon6Nylon 6chemistrycyclophosphazenes polyamide end-functionalization MALDI-TOFMaterials ChemistryOrganic chemistryInert gasMALDIMacromolecules
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On the compatibilization of PET/HDPE blends through a new class of copolyesters

2000

Polyethyleneterephthalate (PET) and polyethylene are incompatible polymers and their blends show, in general, poor properties. Compatibilization is then a necessary step to obtain blends with good mechanical and barrier properties. In this work different compatibilizing agents were used, i.e. a maleic anhydride elastomer and some new products containing graft-copolymers having polyester segments grafted onto polyethylene backbone chains. Both the functionalized elastomer and the new products drastically improve the morphology and the ductility of the blend. In the case of the modified elastomer the compatibilizing action has been attributed to the formation of H-bonds whereas the copolymers…

chemistry.chemical_classificationPOLYETHYLENEMaterials sciencecompatibilizationPolymers and PlasticsOrganic ChemistryPET/HDPE blendsMaleic anhydridePolymerCompatibilizationPolyethyleneElastomercopolyestersLIQUID-CRYSTALLINE POLYMERPolyesterchemistry.chemical_compoundPET/HDPE blends; copolyesters; compatibilization; LIQUID-CRYSTALLINE POLYMER; POLYETHYLENEchemistryChemical engineeringMaterials ChemistryPolymer blendHigh-density polyethyleneComposite materialPolymer
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From Polymers to Nanomedicines: New Materials for Future Vaccines

2013

Nanomedicine is the medical application of nanotechnology and therefore covers various kinds of nanoparticles. In this chapter, we would like to provide a brief introduction and overview of nanoparticles for the modulation of the immune system. In general, these nano-sized objects can be inorganic colloids, organic colloids (synthesized by emulsion polymerization or mini-/nanoemulsion techniques), polymeric aggregates (micelles or polymersomes), core cross-linked aggregates (nanohydrogels, crosslinked micelles, or polyplexes), multifunctional polymer coils, dendritic polymers or perfect dendrimers. A special focus is set on polymeric materials, because the chemical composition of the partic…

chemistry.chemical_classificationParticle aggregationMaterials sciencechemistryDendrimerPolymersometechnology industry and agricultureParticleNanomedicineEmulsion polymerizationNanoparticleNanotechnologyPolymer
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