Search results for "nanocomposite"

showing 10 items of 641 documents

Effect of compatibilization on the photo-oxidation behaviour of polyethylene/polyamide 6 blends and their nanocomposites

2015

Abstract Polymer based nanocomposites are increasingly attracting interest from academia and industry, and the use of polymer blends as matrices greatly increase their potential field of application. In order to improve their characteristics, the use of compatibilizers acting on the blend components is mandatory. However, this also leads to rising concerns regarding the behaviour of polymer blend based nanocomposites upon being subjected to photo-oxidative degradation. It is known that morphology can deeply influence the photo-oxidative behaviour, and this can be therefore deeply influenced by the blend components and by the use of compatibilizers. In this work, polymer blend nanocomposites…

chemistry.chemical_classificationFiller (packaging)NanocompositeMaterials scienceNanocompositePolymers and PlasticsPolymerCompatibilizationPolymer blendPolyethyleneCondensed Matter PhysicsLow-density polyethylenechemistry.chemical_compoundchemistryMechanics of MaterialsPolyamideMaterials ChemistryPhoto-oxidationPolymer blendComposite materialCompatibilization
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Design and preparation of core-shell structured magnetic graphene oxide@MIL-101(Fe): Photocatalysis under shell to remove diazinon and atrazine pesti…

2020

Abstract A magnetically separable support with core-shell morphology comprising amine-functionalized Fe3O4 wrapped with graphene oxide (AFG) was successfully prepared and used to support MIL-101(Fe). The ternary AFG@MIL-101(Fe) composite was investigated as a photo-Fenton catalyst for the degradation of recalcitrant diazinon (DIZ) and atrazine (ATZ) pesticides. After 105 min visible light irradiation, the AFG@30MIL-101(Fe) photocatalyst achieved 100 ± 1% and 81 ± 1% photocatalytic degradation efficiency for DIZ and ATZ pollutants, respectively. The recorded data indicated superior photocatalytic ability of the nanocomposite as compared to AF@30MIL-101(Fe) and MIL-101(Fe) photocatalysts for …

NanocompositeRenewable Energy Sustainability and the EnvironmentChemistryGraphene020209 energyRadicalOxide02 engineering and technology[CHIM.CATA]Chemical Sciences/Catalysis021001 nanoscience & nanotechnologylaw.inventionCatalysischemistry.chemical_compoundAdsorption13. Climate actionlawOxidizing agent0202 electrical engineering electronic engineering information engineeringPhotocatalysisGeneral Materials Science0210 nano-technologyComputingMilieux_MISCELLANEOUSNuclear chemistry
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Bimetallic Intersection in PdFe@FeO x ‐C Nanomaterial for Enhanced Water Splitting Electrocatalysis

2022

Supported Fe-doped Pd-nanoparticles (NPs) are prepared via soft transformation of a PdFe-metal oraganic framework (MOF). The thus synthesized bimetallic PdFe-NPs are supported on FeO@C layers, which are essential for developing well-defined and distributed small NPs, 2.3 nm with 35% metal loading. They are used as bifunctional nanocatalysts for the electrocatalytic water splitting process. They display superior mass activity for the oxygen evolution reaction (OER) and the hydrogen evolution reaction (HER), both in alkaline and acid media, compared with those obtained for benchmarking platinum HER catalyst, and ruthenium, and iridium oxide OER catalysts. PdFe-NPs also exhibit outstanding sta…

Oxygen evolution reactionCatàlisiNanotecnologiaRenewable Energy Sustainability and the EnvironmentDesenvolupament sostenibleElectrocatalysisHydrogen evolution reactionNanocompositesGeneral Environmental ScienceAdvanced Sustainable Systems
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Nanocomposites based on clay nanoparticles and block copolymer

2008

Nanocomposite nanoparticle copolymer SANS
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Nanocomposites of epoxy resin with graphene nanoplates and exfoliated graphite: Synthesis and electrical properties

2014

Nanocomposites are nowadays one of the most promising materials. Among different fillers, e.g. carbon nanotubes and silicon carbide nanowires (NWSiC), already used with epoxy resin matrices, graphene exfoliated graphite (EG) and graphene nanoplates have some characteristics that make them unique for electromagnetic shielding materials. However, there is still an unresolved problem of proper dispersion that will ensure the homogeneity of samples. To overcome this drawback, inorganic fibres were proposed. An amount of 0.25 phr (parts per hundred; filler content presented as wt.% of the whole polymeric matrix) NWSiC, added to the EG 1 phr/epoxy resin sample, efficiently prevents filler agglome…

Settore ING-IND/22 - Scienza E Tecnologia Dei Materialinanocompositeexfoliated graphitecombustion synthesisilicon carbide nanowiresSettore CHIM/02 - Chimica Fisica
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Selective localization of organoclay and effects on the morphology and mechanical properties of LDPE/PA11 blends with distributed and co-continuous m…

2010

nanocomposite polymer blendnanocompositeco-continuitymorphologymechanical propertierheologyblend
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Morphology modification of polymer-filled nanocomposites subjected to non-isothermal elongational flow

2010

Morphology modificationpolymer-filled nanocompositenon-isothermal elongational flow
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Multifunctional superparamagnetic MnO@SiO2 core/shell nanoparticles and their application for optical and magnetic resonance imaging

2012

Highly biocompatible multifunctional nanocomposites consisting of monodisperse manganese oxide nanoparticles with luminescent silica shells were synthesized by a combination of w/o-microemulsion techniques and common sol–gel procedures. The nanoparticles were characterized by TEM analysis, powder XRD, SQUID magnetometry, FT-IR, UV/vis and fluorescence spectroscopy and dynamic light scattering. Due to the presence of hydrophilic poly(ethylene glycol) (PEG) chains on the SiO2 surface, the nanocomposites are highly soluble and stable in various aqueous solutions, including physiological saline, buffer solutions and human blood serum. The average number of surface amino groups available for lig…

NanocompositeMaterials scienceDispersityAnalytical chemistryNanoparticleGeneral ChemistryFluorescence spectroscopychemistry.chemical_compoundDynamic light scatteringchemistryChemical engineeringPEG ratioMaterials ChemistryEthylene glycolSuperparamagnetismJournal of Materials Chemistry
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Compatibilized Polyamide 6/Polyethylene Blends Clay Nanocomposites: Effect of the Degradation and Stabilization of the Clay Modifier

2008

Abstract Blends of polyamide 6 (PA6) and high-density polyethylene (HDPE) were compatibilized using an already investigated method and a sample of Cloisite 15A, a montmorillonite modified with ammonium quaternary salts was added. The blends were prepared in a twin screw extruder and characterized from a morphological, rheological and mechanical point of view. The results indicated that, despite a good morphology achieved in the filled blends and a moderate intercalation of the clay, the mechanical properties are far from being good, especially the ultimate properties. In order to investigate the possible influence of the inhibition of the crystallization and of the degradation of the organi…

Materials scienceNanocompositeNanocompositePolymers and PlasticsCompatibilizationPolyethyleneCondensed Matter PhysicsStabilizationlaw.inventionchemistry.chemical_compoundDegradationMontmorilloniteSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialichemistryMechanics of MaterialslawMaterials ChemistryOrganoclayPolymer blendHigh-density polyethyleneCrystallizationComposite materialOrganoclayCompatibilization
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Heat-Resistant Fully Bio-Based Nanocomposite Blends Based on Poly(lactic acid)

2013

Poly(lactic acid) (PLA) is melt mixed with polyamide 11 (PA11) to obtain a heat-resistant fully bio-based blend with PLA as the dominant component. The goal is achieved by adding small amounts of organoclay (OMMT), which is used to manipulate the blend microstructure. The selective positioning of the OMMT inside the PA11 and at the PLA/PA11 interface turns the blend morphology from drop/matrix into co-continuous at high PLA content (70 wt%). The OMMT-rich PA11 framework that interpenetrates the major PLA phase effectively contributes to bear stresses, and the nanocomposite blend keeps its structural integrity up to ≈160 °C, i.e., about 100 °C above the PLA glass transition.

Heat resistantNanocompositeMaterials sciencenanocompositePolymers and PlasticsBIOPOLYMERSGeneral Chemical EngineeringDrop (liquid)Organic Chemistrybiodegradable polymerMicrostructureNANOCOMPOSITESLactic acidchemistry.chemical_compoundPOLYMER BLENDSchemistryPolyamideMaterials ChemistryPLAOrganoclayComposite materialGlass transitionMacromolecular Materials and Engineering
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