Search results for " Plastic"

showing 10 items of 3463 documents

Effect of silica-type sol–gel carrier’s structure and morphology on a supported Ziegler–Natta catalyst for ethylene polymerization

2006

Abstract Silica xerogels with different structures and morphology, synthesized using a sol–gel procedure, were used as a carrier of vanadium catalysts (VOCl 3 /AlEt 2 Cl) for ethylene polymerization. Two techniques of catalyst synthesis were applied: slurry impregnation and gas-phase adsorption and the relevant polymerization methods were then employed. The effect of the carrier structure and morphology on the vanadium loading in the catalysts, the catalyst’s activity and kinetic stability were investigated.

Ethylene polymerizationPolymers and PlasticsSilica gelCatalyst supportUHMWPEOrganic ChemistrySupported catalystsGeneral Physics and AstronomyVanadiumchemistry.chemical_elementSilicaPolyethyleneSol–gelCatalysischemistry.chemical_compoundchemistryPolymerizationPolymer chemistryMaterials ChemistryZiegler–Natta catalystSol-gelEuropean Polymer Journal
researchProduct

Copolymerization of ethylene with norbornene or 1-octene using supported ionic liquid systems

2016

Copolymerization of ethylene with norbornene (E/NB) and ethylene with 1-octene (E/Oct) is performed using supported ionic liquid (SIL) systems, in which metallocene (Cp2VCl2) or post-metallocene [VCl2(salenCl2)] vanadium catalysts are immobilized in pyridinium chloroaluminate ionic liquid supported on silica. The studied SIL catalysts show higher activities as well as stability than their non-supported analogues. In addition, higher activities and better comonomer incorporation are observed for norbornene (above 30 mol%). The comonomer incorporation has considerable influence on copolymer molecular weight (M w), melting temperature, crystallinity degree, and microstructure of the copolymers…

EthyleneMaterials scienceChemistry(all)Polymers and Plastics02 engineering and technologyIonic liquid010402 general chemistry01 natural scienceschemistry.chemical_compoundCrystallinityCopolymerizationPolymer chemistryCopolymerMaterials ChemistryNorbornene1-OcteneComonomerSilicaGeneral ChemistryPolyolefins021001 nanoscience & nanotechnologyCondensed Matter Physics0104 chemical scienceschemistryVanadium catalystIonic liquid0210 nano-technologyMetallocenePolymer Bulletin
researchProduct

The effect of the comonomer on the copolymerization of ethylene with long chain α-olefins using Ziegler–Natta catalysts supported on MgCl2(THF)2

2000

Abstract The effect of the type of the comonomer (1-pentene, 1-hexene, 1-octene, 1-decene and 1-dodecene) on the copolymerization of ethylene with α-olefin over vanadium (VOCl3 and VCl4) and titanium (TiCl4) catalysts supported on MgCl2(THF)2 and activated by Et2AlCl was studied. The results show that the introduction of a longer α-olefin in the ethylene polymerization feed depresses the catalytic activity of all investigated catalysts. The catalyst activity does not depend on the type of the comonomer applied but changes with the comonomer concentration in the feed. The incorporation of α-olefin in the polymer chain was found to be dependent on the type and concentration of the comonomer i…

EthyleneMaterials scienceCopolymerization of ethylene with α-olefinPolymers and PlasticsComonomerOrganic ChemistryCatalysischemistry.chemical_compoundCrystallinityVanadium catalystPolymerizationchemistryPolymer chemistryMaterials ChemistryCopolymerZiegler–Natta catalystOcteneTitanium catalystPolymer
researchProduct

Structural analysis of linear/branched ethylene block copolymers

2017

EthyleneMaterials sciencePolymers and Plastics02 engineering and technologyPolyethylene010402 general chemistry021001 nanoscience & nanotechnologyMicrostructureChain shuttling polymerizationBranching (polymer chemistry)01 natural sciences0104 chemical scienceschemistry.chemical_compoundchemistryChemical engineeringCopolymer0210 nano-technologyPolymers for Advanced Technologies
researchProduct

Competition between α and γ phases in isotactic polypropylene: effects of ethylene content and nucleating agents at different cooling rates

2001

Abstract The influence of ethylene content, nucleating agents and cooling rate upon the formation of γ phase in isotactic polypropylene is investigated. Detailed analysis of wide angle X-ray diffraction shows that some γ phase can appear even in copolymers of very low ethylene content (0.5 mol.%). Differential scanning calorimetry shows a double melting peak. Nucleating agents of different types are found to enhance γ phase crystallization, even in high molecular weight homopolymers. In any of the materials studied the amount of γ phase decreases with increasing cooling rate, going to zero at a cooling rate of about 10°C s−1. We interpret the observations in terms of the kinetics of growth …

EthyleneMaterials sciencePolymers and PlasticsComonomerOrganic ChemistryKineticsNucleationlaw.inventionchemistry.chemical_compoundDifferential scanning calorimetrychemistryChemical engineeringlawTacticityPolymer chemistryMaterials ChemistryCopolymerCrystallizationPolymer
researchProduct

Synthesis and structural characterization of ethylene copolymers containing double-decker silsesquioxane as pendant groups and cross-linkage sites by…

2018

Abstract The copolymers of ethylene with the double-decker silsesquioxane (DDSQ) were synthesized by copolymerization with the use of metallocene and bis(phenoxy-imine) catalysts. The influence of the kind of the catalyst and polyreaction conditions on the performance of copolymerization as well as on the properties of the copolymers was studied. Depending on polyreaction parameters, the DDSQ contents in the copolymer varied in the range of 0.93–11.53 wt% which determined the compositions and the structural properties of copolymers. DDSQ incorporated into the polymer chain could constitute pendant groups in the main chain or it could act as a cross-linking agent. The ethylene/DDSQ copolymer…

EthyleneMaterials sciencePolymers and PlasticsGeneral Physics and Astronomy02 engineering and technology010402 general chemistry01 natural scienceslaw.inventionCatalysischemistry.chemical_compoundcoordinative copolymerizationlawPolymer chemistryMaterials ChemistryCopolymerethyleneCrystallizationchemistry.chemical_classificationdouble-decker silsesquioxane (DDSQ)Organic ChemistryPolymer021001 nanoscience & nanotechnologySilsesquioxane0104 chemical scienceschemistry0210 nano-technologyGlass transitionMetallocenecross-linkingEuropean Polymer Journal
researchProduct

Studies on the microstructure of ethylene/1-hexene copolymers prepared over heterogeneous Ziegler - Natta catalysts

2000

Three MgCl 2(THF) 2-supported, AlEt 2Cl-activated VOCl 3, VCl 4 and TiCl 4 Ziegler - Natta catalysts were used to copolymerize ethylene with 1-hexene in the presence of hydrogen to prepare low-M well-soluble copolymers that could be analyzed by 13C-NMR. The spectra (Fig. 1) showed resonance signals due to ethylene and 1-hexene units in positions unaffected by catalyst type and with intensities related to the degree of comonomer incorporation into the copolymer. The triad sequence distribution and comonomer reactivity ratios (r) were calculated by the Randall method [11] and Bernoulli statistics based on the known copolymer composition. The latter appeared to be the more valid in predicting …

EthyleneMaterials sciencePolymers and PlasticsbiologyGeneral Chemical EngineeringmicrostructureNattaethylene/1-hexene copolymersbiology.organism_classificationMicrostructurereactivity ciefficientsCatalysis1-Hexenechemistry.chemical_compoundchemistryMgCl2(THF)2-supported V and Ti catalystsMaterials ChemistryCopolymerOrganic chemistryPolimery
researchProduct

Thermal analysis as a quality tool for assessing the influence of thermo-mechanical degradation on recycled poly(ethylene terephthalate)

2009

Mechanical recycling of poly(ethylene terephthalate) (PET) was simulated by multiple processing to assess the effects of thermo-mechanical degradation, and characterized using rheological and thermal analysis techniques. Thermo-mechanical degradation under repeated extrusion induces chain scission reactions in PET, which result in a dramatic loss in the deformation capabilities and an increase in the fluidity of the polymer under reprocessing, reducing its recycling possibilities after four extrusion cycles. Multiple reprocessing severely affects the storage modulus and the microstructure of recycled PET, both in the amorphous and crystalline regions. Multimodal melting behavior is observed…

EthyleneMaterials scienceSolucions polimèriquesPolymers and PlasticsOrganic ChemistryTermoplàsticschemistry.chemical_compoundCrystallinityThermchemistryDegradation (geology)ExtrusionThermal stabilityComposite materialThermal analysisMelt flow index
researchProduct

Polypropylene and poly(ethylene-co-1-octene) effective synthesis with diamine-bis(phenolate) complexes: Effect of complex structure on catalyst activ…

2017

A series of group 4 metal complexes bearing amine-bis(phenolate) ligands with the amino side-arm donor: (μ-O)[Me2N(CH2)2N(CH2-2-O-3,5-tBu2-C6H2)2ZrCl]2 (1a), R2N(CH2)2N(CH2-2-O-3-R1-5-R2-C6H2)2TiCl2 (R = Me, R1, R2 = tBu (2a), R = iPr, R1, R2 = tBu (2b), R = iPr, R1 = tBu, R2 = OMe (2c)), and Me2N(CH2)2N(CH2-2-O-3,5-tBu2-C6H2)(CH2-2-O-C6H4)TiCl2 (2d) are used in ethylene and propylene homopolymerization, and ethylene/1-octene copolymerization. All complexes, upon their activation with Al(iBu)3/Ph3CB(C6F5)4, exhibit reasonable catalytic activity for ethylene homo- and copolymerization giving linear polyethylene with high to ultra-high molecular weight (600·× 103–3600·× 103 g/mol). The activi…

EthylenePolymers and Plastics010405 organic chemistryComonomerOrganic Chemistrydiamino-bis(phenolate) catalystsmicrostructurepoly(ethylene-co-1-octene)Ziegler-Natta polymerization010402 general chemistry01 natural sciences0104 chemical sciencesCatalysisLinear low-density polyethylenechemistry.chemical_compoundchemistryPolymerizationDiaminePolymer chemistryMaterials ChemistryCopolymer1-OctenepolypropyleneJournal of Polymer Science Part A-Polymer Chemistry
researchProduct

Titanium and vanadium catalysts with oxazoline ligands for ethylene-norbornene (co)polymerization

2018

A series of catalysts, (Py-ox)TiCl4, (Py-box)TiCl4, (Py-ox)VCl3, (Py-box)VCl3, SIL/(Py-ox)VCl3, SIL/(Py-box)VCl3, with 2-(1,3-oxazolin-2-yl)pyridine (Py-ox) and 2,6-bis(1,3-oxazolin-2-yl)pyridine (Py-box) ligands, silica support modified by 1-[3-(triethoxysilyl)propyl]pyridinium ethylchloroaluminate ionic liquid (SIL), activated by AlEt2Cl, AlEtCl2, and methylaluminoxane (MMAO) were studied in ethylene polymerization and ethylene-norbornene copolymerization. Single-crystal X-ray diffraction is given for both Py-ox and Py-box. The complexation was confirmed by NMR and ESI-MS methods. All complexes were found to be active in ethylene polymerization with better performance of the vanadium cata…

EthylenePolymers and Plastics010405 organic chemistryOrganic ChemistryMethylaluminoxaneGeneral Physics and AstronomynorbornenePolyethyleneoxazoline ligands010402 general chemistry01 natural sciences0104 chemical sciencesIonic liquidschemistry.chemical_compoundchemistryPolymerizationorganometallic catalystsPolymer chemistryPyridineMaterials ChemistryCopolymercopolymersethylenePyridiniumNorborneneEuropean Polymer Journal
researchProduct