Search results for "Composites"

showing 10 items of 1905 documents

The first structurally characterized cationic lanthanide–alkyl complexesElectronic supplementary information (ESI) available: experimental and spectr…

2002

Reaction of rare earth metal–alkyl complexes [Ln(CH2SiMe3)3(THF)2] (Ln = Y, Lu) with B(C6X5)3 (X = H, F) in the presence of crown ethers gives crystallographically characterized ion pairs [Ln(CH2SiMe3)2(CE)(THF)n]+[B(CH2SiMe3)(C6X5)3]– (CE = [12]-crown-4, n = 1; CE = [15]-crown-5 and [18]-crown-6, n = 0).

chemistry.chemical_classificationLanthanideStereochemistryRare earthMetals and AlloysCationic polymerizationGeneral ChemistryIon pairsMedicinal chemistryCatalysisSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialschemistryMaterials ChemistryCeramics and CompositesAlkylChemical Communications
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Surface and Intercalation Chemistry of Polycarboxylate Copolymers in Cementitious Systems.

2009

International audience; The Ca–Al-layered double hydroxide, the so-called AFm phase, is a product of cement hydration. It is shown that the interaction of this phase with anionic polycarboxylate ether (PCE)-based dispersant polymers is not a simple adsorption but a more complex intercalation phenomenon leading to the transient sequestration of the PCE within the AFm crystallites. As a result, part of the PCE is immobilized, forming a layered organo-mineral composite, and does not play its role of a dispersing agent. This article presents, along general considerations on the links between cement chemistry and rheology, a detailed investigation of the formation, structure, and stability of a …

chemistry.chemical_classificationMaterials scienceCoprecipitationIntercalation (chemistry)Composite number0211 other engineering and technologies02 engineering and technologyPolymerNeutron scattering021001 nanoscience & nanotechnologychemistry.chemical_compoundAdsorptionchemistryChemical engineeringPhase (matter)021105 building & constructionMaterials ChemistryCeramics and CompositesComposite material0210 nano-technologyAFm phase
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The effect of free polymer on the glass transition dynamics of microgel colloids

2002

Abstract From the phase behavior we establish that 1:10 crosslinked polystyrene microgel colloids in a good solvent can be considered as hard spheres whereas 1:50 crosslinked particles are slightly softer. Nevertheless, the glass transition dynamics of 1:10 microgels and a binary mixtures of 1:50 microgels can be described in both cases within the mode coupling theory for hard spheres. The only difference is that the increase of the polydispersity from about 7% to about 13% when going from the one-component system to the mixture is accompanied by a shift of the glass transition from ϕ g ≈0.56 to ϕ g ≈0.595. On addition of linear polystyrene to the 1:50 binary mixture we find a tremendous ac…

chemistry.chemical_classificationMaterials scienceDispersityPolymerHard spheresCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsColloidchemistry.chemical_compoundchemistryChemical physicsPhase (matter)Polymer chemistryMaterials ChemistryCeramics and CompositesPolystyreneGlass transitionStructure factorJournal of Non-Crystalline Solids
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Perovskite solar cells prepared by flash evaporation

2015

A simple vacuum deposition method for the preparation of high quality hybrid organic-inorganic methylammonium lead iodide perovskite thin films is reported. When sandwiched in between organic charge transporting layers, such films lead to solar cells with a power conversion efficiency of 12.2%.

chemistry.chemical_classificationMaterials scienceF100IodideInorganic chemistryEnergy conversion efficiencyF200Metals and AlloysFlash evaporationGeneral ChemistryHybrid solar cellCatalysisSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialschemistryChemical engineeringVacuum depositionMaterials ChemistryCeramics and CompositesThin filmPerovskite (structure)Chemical Communications
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Estimation of the elastic constants of highly porous cellular plastics reinforced with fibres embedded in foam struts

2015

In order to enhance the mechanical properties of polymer foams, fillers of different materials and sizes are being applied. Fibrous fillers shorter than the characteristic foam cell dimensions have the potential of efficient reinforcement, due to their high aspect ratio, without detrimentally interfering with foam structure. A theoretical model is developed for evaluation of the effect of filler on foam stiffness. The elastic response of rigid polymer foams filled with short fibres, of length commensurable with that of foam struts, is modelled by using the orientational averaging technique. Explicit expressions for components of the stiffness tensor of composite foams are derived in terms …

chemistry.chemical_classificationMaterials scienceMechanical EngineeringComposite numberStiffness02 engineering and technologyPolymer021001 nanoscience & nanotechnologyStructural elementchemistry.chemical_compound020303 mechanical engineering & transports0203 mechanical engineeringchemistryMechanics of MaterialsHighly porousMaterials ChemistryCeramics and CompositesmedicineComposite materialElasticity (economics)medicine.symptom0210 nano-technologyPolyurethaneStiffness matrixJournal of Composite Materials
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Formation of nanorods by self-assembly of alkyl-substituted polyphenylene dendrimers on graphite

2000

Alkyl-substituted polyphenylene dendrimers with a tetrahedral or disk-like shape form self-assembled monolayers on graphite (HOPG) which show complex supramolecular structures, such as parallel rods of 6 nm diameter or two-dimensional crystals.

chemistry.chemical_classificationMaterials scienceMetals and AlloysSupramolecular chemistryNanotechnologyGeneral ChemistryCatalysisRodSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsCrystallographychemistryDendrimerMonolayerMaterials ChemistryCeramics and CompositesNanorodGraphiteSelf-assemblyAlkylChemical Communications
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Different kinds of solid solutions in the V2O5-ZrSiO4-NaF system by sol-gel processes and their characterization

1993

Abstract In the V2O5-ZrSiO4-NaF system, three kinds of substances have been identified by sol-gel methods depending on the V2O5 amounts in the composition. Their characterization by X-ray diffraction, measurements of unit cell parameters, UV-visible (UV-V) spectroscopy, differential thermal analysis and lab colour parameter determination allow the consideration of three kinds of solid solution in the zircon lattice: (a) V+5,V+4-ZrSiO4, thermally stable and with a deep green colour; (b) V+4-ZrSiO4, thermally stable and blue coloured, made by the sol-gel method and with V2O5 amounts lower than 0·03 mol per formula weight; and (c) Na+,F−,V+4-ZrSiO4, a solid solution with a deep blue-turquoise …

chemistry.chemical_classificationMaterials scienceMolar massInorganic chemistryAnalytical chemistrychemistry.chemical_compoundchemistryDifferential thermal analysisZirconium(IV) silicateX-ray crystallographyMaterials ChemistryCeramics and CompositesQualitative inorganic analysisChemical compositionInorganic compoundSolid solutionJournal of the European Ceramic Society
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Activity of Antimicrobial Silver Polystyrene Nanocomposites.

2012

A simple technique based on doping polymers within situgenerated silver nanoparticles (Ag/PS films) has been developed. In particular, an antiseptic material has been prepared by dissolving silver 1,5-cyclooctadiene-hexafluoroacetylacetonate in amorphous polystyrene, and the obtained solid solution has been heated for ca. 10 s at a convenient temperature (180°C). Under such conditions the metal precursor decomposes producing silver atoms that diffuse into the polymer and clusterize. The antimicrobial characteristics of the resulting polystyrene-based material have been accurately evaluated towardEscherichia coli (E. coli)comparing the cytotoxicity effect of 10 wt.% and 30 wt.% (drastic and …

chemistry.chemical_classificationMaterials scienceNanocompositeArticle SubjectAnnealing (metallurgy)PolymerpolystyreneSilver nanoparticleAmorphous solidMetalchemistry.chemical_compoundchemistryvisual_artlcsh:Technology (General)nanocompositesPolymer chemistryvisual_art.visual_art_mediumlcsh:T1-995antimicrobialsilverGeneral Materials SciencePolystyreneDissolutionNuclear chemistry
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Nanoclays for Conservation

2019

Within the conservation of artworks materials, this chapter describes innovative strategies based on clay nanoparticles that are promising for protective coating, surface cleaning, and consolidation. We present the preparation of polymer/montmorillonite nanocomposites, which are revealed as efficient protective coatings for highly porous stones, marbles, and bread-made artifacts. Anticorrosive films for metal substrates have been obtained by polymer filling with laponite and halloysite nanotubes (HNTs) containing corrosion inhibitors into their lumen. The dispersion of hydrophobically modified HNTs into chitosan matrix drives to fabricate biofilms with surface cleaning capacity. Rust stains…

chemistry.chemical_classificationMaterials scienceNanocompositeHalloysite nanotubesComposite numberNanoclaysPolymerengineering.materialHalloysiteNanocompositesCoatingCellulose fiberchemistry.chemical_compoundMontmorilloniteCoatingchemistryChemical engineeringengineeringSurface cleaningCelluloseConsolidation
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Influence of the modification, induced by zirconia nanoparticles, on the structure and properties of polycarbonate

2013

Melt compounding was used to prepare polycarbonate (PC)–zirconia nanocomposites with different amounts of zirconia. The effect of the zirconia loading, in the range of 1–5 wt.%, on the structure, mechanical properties and thermal degradation kinetics was investigated. The zirconia nanoparticle aggregates were well dispersed in the PC matrix and induced the appearance of a local lamellar order in the polycarbonate as inferred by SAXS findings. This order could be a consequence of the intermolecular interactions between zirconia and the polymer, in particular with the quaternary carbon bonded to the methyl groups and the methyl carbon as inferred from the NMR results. The presence of zirconia…

chemistry.chemical_classificationMaterials scienceNanocompositeNanocompositePolymers and PlasticsOrganic ChemistryGeneral Physics and AstronomyNanoparticlePolymerInterfacial interactionDegradationchemistryPolycarbonatevisual_artMaterials Chemistryvisual_art.visual_art_mediumZirconiaDegradation; Interfacial interaction; Nanocomposites; Polycarbonate; ZirconiaThermal stabilityCubic zirconiaLamellar structurePolycarbonateComposite materialGlass transitionSettore CHIM/02 - Chimica Fisica
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