Search results for "Classification"

showing 10 items of 29475 documents

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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Weathering of low-density polyethylene grafted with itaconic acid in laboratory tests

2011

Polyethylene grafted with itaconic acid was subjected to weathering under laboratory accelerated conditions. The course of the photo-oxidative degradation process of that material was studied by FTIR spectroscopy both through quantitative measurements of changes in absorbance values at selected wave numbers and through measurements of surface area values for absorption bands which were separated by means of deconvolution. The use of both those procedures of quantitative determinations resulted in a general conclusion that the oxidation process was initiated from the very first moment of irradiation, and it produced ketones, acids, esters (intramolecular and of acetate type), peracids, peres…

polyethylenechemistry.chemical_classificationPolymers and PlasticsInorganic chemistryGeneral ChemistryPolymeritaconic acidPolyethylenepolymer structural changesSurfaces Coatings and FilmsAbsorbancechemistry.chemical_compoundLow-density polyethyleneFTIRchemistryageingPolymer chemistryMaterials ChemistryItaconic acidIrradiationAbsorption (chemistry)Fourier transform infrared spectroscopyJournal of Applied Polymer Science
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Influence of accelerated ageing conditions on the process of polyolefines degradation

2003

The process of polymers weathering and the methods of polymers weathering and accelerated ageing investigations were characterized. Accelerated ageing tests of polyethylene and polypropylene samples have been done in laboratory conditions. The ageing time (up to 400 h) influence, at various levels of ageing factors: UV radiation intensity (80—190 W/m2), temperature (35—55 °C) and humidity (30—90%), on the changes of the structures of polymers investigated (shares of carbonyl and olefinic groups from FT-IR spectra — Fig. 1, 2, 4 and 5), on the changes of polymers molecular weights (Fig. 3 and 6, Table 1) and on the changes of mechanical properties during tension (Table 1) has been investigat…

polyethylenechemistry.chemical_classificationPolypropyleneMaterials sciencePolymers and PlasticsphotooxidationGeneral Chemical Engineeringradiation intensificationHumidityPolymerPolyethylenechemistry.chemical_compoundaccelerated ageingchemistryAgeingAgeing factorsweatheringMaterials ChemistryphotodegradationComposite materialpolypropylenePolimery
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Analysis of a GC/MS Thermal Desorption System with Simultaneous Sniffing for Determination of Off-Odor Compounds and VOCs in Fumes Formed during Extr…

2001

A thermal desorption equipment introducing volatile organic compounds (VOCs) into the gas chromatographic/ mass spectrometric system (GC/MS) with simultaneous sniffing (SNIFF) is a suitable method for identifying the volatile organic off-odor compounds formed during the extrusion coating process of low-density polyethylene. Fumes emitted during the extrusion coating process of three different plastic materials were collected at two different temperatures (285 and 315 degrees C) from an outgoing pipe and near an extruder. The VOCs of fumes were analyzed by drawing a known volume of air through the adsorbent tube filled with a solid adsorbent (Tenax GR). The air samples were analyzed by using…

polyethylenechemistry.chemical_classificationfumesChromatographyVOCPlastics extrusionThermal desorptionTenaxExtrusion coatingcoatingsMass spectrometrymethodsAnalytical Chemistrychemistryvolatile organic compoundsVolatile organic compoundGas chromatographyGas chromatography–mass spectrometryAnalytical Chemistry
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The use of in-line quantitative analysis to follow polymer processing

2009

In this work it is presented three applications of real time analysis during extrusion process using an optical device developed by our research group, which applies the concepts of light extinction. Monitoring of polymer blends morphology takes place to infer data concerned to dispersed phase size and concentration. The detector also enables information about melting temperature of polymer during extrusion and the level of viscous heating, and the exfoliation step during processing of a polymer-clay nanocomposite.

polymer blend morphologychemistry.chemical_classificationWork (thermodynamics)Materials scienceNanocompositePolymers and PlasticsOrganic ChemistryDetectorPolymerCondensed Matter PhysicsExfoliation jointextrusionSettore ING-IND/22 - Scienza E Tecnologia Dei Materialichemistryin-line measurementviscous heatingPhase (matter)nanocompositesMaterials ChemistryExtrusionPolymer blendComposite material
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Functional Bionanocomposite Fibers of Chitosan Filled with Cellulose Nanofibers Obtained by Gel Spinning

2021

Extremely high mechanical performance spun bionanocomposite fibers of chitosan (CHI), and cellulose nanofibers (CNFs) were successfully achieved by gel spinning of CHI aqueous viscous formulations filled with CNFs. The microstructural characterization of the fibers by X-ray diffraction revealed the crystallization of the CHI polymer chains into anhydrous chitosan allomorph. The spinning process combining acidic–basic–neutralization–stretching–drying steps allowed obtaining CHI/CNF composite fibers of high crystallinity, with enhanced effect at incorporating the CNFs. Chitosan crystallization seems to be promoted by the presence of cellulose nanofibers, serving as nucleation sites for the gr…

polymer fiber yarnsMaterials sciencePolymers and PlasticsComposite numberOrganic chemistrymechanical propertiesArticlelaw.inventionChitosanchemistry.chemical_compoundCrystallinityQD241-441lawFiberComposite materialCrystallizationCellulosecellulose nanofiberschemistry.chemical_classificationGeneral ChemistryPolymerchemistrybio-nanocompositesgel/wet spinningNanofiberchitosanPolymers
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Block copolymers from ionic liquids for the preparation of thin carbonaceous shells

2017

This paper describes the controlled radical polymerization of an ionic-liquid monomer by RAFT polymerization. This allows the control over the molecular weight of ionic liquid blocks in the range of 8000 and 22000 and of the block-copolymer synthesis. In this work we focus on block copolymers with an anchor block. They can be used to control the formation of TiO2 nanoparticles, which are functionalized thereafter with a block of ionic-liquid polymer. Pyrolysis of these polymer functionalized inorganic nanoparticles leads to TiO2 nanoparticles coated with a thin carbonaceous shell. Such materials may, e.g., be interesting as battery materials.

polymeric ionic liquidRadical polymerizationblock copolymer02 engineering and technology010402 general chemistry01 natural sciencesFull Research Paperlcsh:QD241-441chemistry.chemical_compoundlcsh:Organic chemistryPolymer chemistryCopolymerReversible addition−fragmentation chain-transfer polymerizationlcsh:Scienceionic liquidchemistry.chemical_classificationRAFT polymerizationcarbonOrganic ChemistryPolymer021001 nanoscience & nanotechnologyBlock (periodic table)0104 chemical sciencesChemistryMonomerchemistryIonic liquidlcsh:Q0210 nano-technologyPyrolysisBeilstein Journal of Organic Chemistry
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Mitochondrial sequence analysis of Salamandra taxa suggests old splits of major lineages and postglacial recolonizations of Central Europe from disti…

2000

Representatives of the genus Salamandra occur in Europe, Northern Africa and the Near East. Many local variants are known but species and subspecies status of these is still a matter of dispute. We have analysed samples from locations covering the whole expansion range of Salamandra by sequence analysis of mitochondrial D-loop regions. In addition, we have calibrated the rate of divergence of the D-loop on the basis of geologically dated splits of the closely related genus Euproctus. Phylogenetic analysis of the sequences suggests that six major monophyletic groups exist (S. salamandra, S. algira, S. infraimmaculata, S. corsica, S. atra and S. lanzai) which have split between 5 and 13 milli…

population differentiationSalamandra infraimmaculataRange (biology)BiogeographyPopulationZoologySubspeciesSalamandra algiraphylogenyDNA MitochondrialGeneticsAnimalsSalamandraD-loopeducationEcology Evolution Behavior and SystematicsEuproctusbiogeographyeducation.field_of_studybiologyEcologybiology.organism_classificationBiological EvolutionEuropeGenetics PopulationFranceSalamandra
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Selective Laser Sintering of Metal-Organic Frameworks: Production of Highly Porous Filters by 3D Printing onto a Polymeric Matrix.

2019

Metal‐organic frameworks (MOFs) have raised a lot of interest, especially as adsorbing materials, because of their unique and well‐defined pore structures. One of the main challenges in the utilization of MOFs is their crystalline and powdery nature, which makes their use inconvenient in practice. Three‐dimensional printing has been suggested as a potential solution to overcome this problem. We used selective laser sintering (SLS) to print highly porous flow‐through filters containing the MOF copper(II) benzene‐1,3,5‐tricarboxylate (HKUST‐1). These filters were printed simply by mixing HKUST‐1 with an easily printable nylon‐12 polymer matrix. By using the SLS, powdery particles were fused t…

porosityMaterials sciencematerials sciencelaser sinteringMixing (process engineering)3D printingNanotechnologyorganometalliyhdisteet010402 general chemistry01 natural scienceslaw.inventionMatrix (chemical analysis)huokoisuusAdsorptionlaw3D-tulostuspolymeeritmateriaalitiedePorosityta116metal-organic frameworkspolymerschemistry.chemical_classification010405 organic chemistrybusiness.industryGeneral ChemistryPolymer0104 chemical sciencesSelective laser sinteringchemistryadsorptionMetal-organic frameworkadsorptiobusinessChemPlusChem
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