Search results for "Surfaces and interfaces"

showing 10 items of 939 documents

Chemical effect on the XPS spectra of the valence band and on O KLL and Pd MNN Auger spectra in pumice-supported catalysts

1992

X-ray photoelectron spectra of the valence band and X-ray-excited O KLL Auger transition of pumice-supported Pd and Pt catalysts have been obtained and compared to the corresponding spectra of pumice (a naturally occurring amorphous aluminosilicate). The changes observed indicate interaction between metal and support. The valence region of the catalysts consists of three large peaks: one due to the d band of the metals and the other to the O 2p non-bonding orbitals and bonding-type orbitals formed by a mixing of the atomic orbitals (O 2p, Si 3s and Si 3p) of oxygen and silicon from the support. The intensity decrease of the component due to the bonding orbitals, observed in the catalyst spe…

Valence (chemistry)ChemistryAnalytical chemistrySurfaces and InterfacesGeneral ChemistryCondensed Matter PhysicsSurfaces Coatings and FilmsAugerAmorphous solidCondensed Matter::Materials ScienceX-ray photoelectron spectroscopyTransition metalAtomic orbitalAluminosilicatePhysics::Atomic and Molecular ClustersMaterials ChemistryMolecular orbitalSurface and Interface Analysis
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Surface versus bulk composition of a phosphate glass

1994

Transmission and conversion electron Mossbauer spectroscopy as well as photoelectron spectroscopy were applied to study alterations of the surface layer of an iron containing industrial phosphate glass as compared with its bulk. In the surface layer, after polishing and exposure to ambient atmosphere, Fe 2+ is partially oxidized to Fe 3+ . This oxidation, however, does not increase the O/P ratio in this layer, because it goes along with a strong leaching of network modifiers. This leaching leads to a net decrease of the O/P ratio because it overcompensates the relative oxygen increase by Fe 2+ oxidation and by uptake of water

Valence (chemistry)Mössbauer effectChemistrytechnology industry and agricultureAnalytical chemistrychemistry.chemical_elementSurfaces and InterfacesGeneral ChemistryCondensed Matter PhysicsOxygenSurfaces Coatings and FilmsPhosphate glassX-ray photoelectron spectroscopyConversion electron mössbauer spectroscopyMaterials ChemistrySurface layerLeaching (metallurgy)Surface and Interface Analysis
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Electronic structure of adsorbed organic molecules

1997

We report on investigations of chiral organic molecules in the gas phase and physisorbed on graphite. The measurements were carried out by means of angle-resolving VUV photoelectron spectroscopy. The emission from specific orbitals in oriented molecules can be forbidden because of dipole selection rules. Due to the lack of certain features in the spectra, it was possible to determine the adsorption geometry of cyclohexanone and camphor as being with their ring system parallel to the surface. By comparison of gas-phase and adsorbate spectra of ethyl benzene derivatives, adsorption could be proved to be molecular without decomposition. For amino acids on graphite, the occurrence of characteri…

Vapor pressureChemistryAnalytical chemistryCyclohexanoneSurfaces and InterfacesElectronic structureCondensed Matter PhysicsSpectral lineSurfaces Coatings and FilmsCondensed Matter::Materials Sciencechemistry.chemical_compoundAdsorptionX-ray photoelectron spectroscopyPhysics::Atomic and Molecular ClustersMaterials ChemistryPhysical chemistryMoleculeGraphitePhysics::Chemical PhysicsSurface Science
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Low-temperature molecular layer deposition using monifunctional aromatic precursors and ozone-based ring-opening reactions

2017

Molecular layer deposition (MLD) is an increasingly used deposition technique for producing thin coatings consisting of purely organic or hybrid inorganic-organic materials. When organic materials are prepared, low deposition temperatures are often required to avoid decomposition, thus causing problems with low vapor pressure precursors. Monofunctional compounds have higher vapor pressures than traditional bi- or trifunctional MLD precursors, but do not offer the required functional groups for continuing the MLD growth in subsequent deposition cycles. In this study, we have used high vapor pressure monofunctional aromatic precursors in combination with ozone-triggered ring-opening reactions…

Vapor pressureHydrostatic pressure02 engineering and technologyphenols01 natural sciencesdepositionchemistry.chemical_compoundhybrid materialsElectrochemistryGeneral Materials Sciencecharacterizationinfrared spectroscopyta116Spectroscopyring opening reactionTrifluoromethylvapor pressurehybrid organic-inorganiclow-temperatureSurfaces and Interfacesself assembly021001 nanoscience & nanotechnologyCondensed Matter Physicsdecay (organic)hydrostatic pressure0210 nano-technologyHybrid materialLayer (electronics)Inorganic chemistryta221mechanismnegative ions010402 general chemistrycomplex mixturesinorganic coatingsBenzaldehydeAtomic layer depositionPhenolta216ta115ta114aromatic compoundsmonofunctional aromaticstemperature0104 chemical sciencesozonechemistryALDatomic layer depositionMLDLangmuir
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Thiopeptide-Supported Lipid Layers on Solid Substrates

1997

The sequential layer-by-layer formation of peptide-supported bimolecular lipid membranes at solid supports is described. In the first step, thiol-derivatized peptide sequences of 5 and 7 amino acids are assembled on a Au substrate. After activation of their COOH-terminus phospholipid molecules (DMPE) are covalently attached via an amid bond to form a tethered monolayer on the Au electrode. The different preparation steps are analyzed by Fourier transform IR, X-ray reflectometry, and surface plasmon spectroscopy. The latter technique is then also used to on-line monitor at the solid/solution interface the formation of a bilayer by fusion of vesicles prepared from a fluid lipid mixture with a…

VesicleBilayerPhospholipidSynthetic membraneAnalytical chemistryInfrared spectroscopySurfaces and InterfacesCondensed Matter Physicschemistry.chemical_compoundCrystallographyMembranechemistryMonolayerElectrochemistryGeneral Materials ScienceLipid bilayer phase behaviorSpectroscopyLangmuir
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Halloysite nanotubes-based nanocomposites for the hydrophobization of hydraulic mortar

2021

Abstract The treatment of stone surfaces for their protection from ageing caused by natural and anthropogenic effects is an open issue in materials development for Cultural Heritage. We thought interesting to verify the suitability of a modified cellulose biofilm filled with halloysite nanotubes as wax compatibilizers to design a protecting layer. A hydraulic mortar was selected as a stone prototype. To improve the physico-chemical properties of the covering layer, wax microparticles have been incorporated to control transport, consolidation and wettability features. In particular, different application protocols have been studied, namely brushing and spraying, to assess whether the propos…

WaxMaterials scienceNanocompositeSurfaces and InterfacesGeneral Chemistryengineering.materialMicrostructureHalloysiteSurfaces Coatings and FilmsContact angleColloid and Surface ChemistryAdsorptionvisual_artStone Biopolymer Cultural heritage Halloysite nanotubes Nanocompositesengineeringvisual_art.visual_art_mediumWettingComposite materialMortarSettore CHIM/02 - Chimica FisicaJournal of Coatings Technology and Research
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Probing Protein−Membrane Interactions Using Solid Supported Membranes

2011

International audience; Tethered bilayer lipid membranes have been used as a model system to mimic the interactions between the whey protein β-lactoglobulin and a lipid interface. The approach allowed for a detailed study of the lipid-protein interactions, the results being of possible importance in food and cosmetic applications. For such applications, lipid-protein interactions and the interfacial behavior are vital factors in controlling and manipulating process conditions such as emulsion stabilization and gelification. Lipid composition as well as the structural properties of the protein governed their interactions, which were probed by a combination of surface plasmon spectroscopy, ne…

Whey proteinChromatographyChemistryBilayerLipid Bilayersfood and beveragesModel systemLactoglobulinsSurfaces and InterfacesCondensed Matter PhysicsReflectivity[SDV.BBM.BP]Life Sciences [q-bio]/Biochemistry Molecular Biology/BiophysicsMembraneMembrane interactionBilayer lipid membranesElectrochemistryBiophysicslipids (amino acids peptides and proteins)General Materials ScienceLipid bilayer phase behaviorSpectroscopyLangmuir
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Hyaluronan alkyl derivatives-based electrospun membranes for potential guided bone regeneration: Fabrication, characterization and in vitro osteoindu…

2020

Item does not contain fulltext The aim of the work was to determine the effects of the chemical functionalization of hyaluronic acid (HA) with pendant aliphatic tails at different lengths and free amino groups in terms of chemical reactivity, degradation rate, drug-eluting features, and surface properties when processed as electrospun membranes (EM) evaluating the osteoinductive potential for a possible application as guided bone regeneration (GBR). To this end, a series of HA derivatives with different aliphatic tails (DD-Cx mol% ≈ 12.0 mol%) and decreasing derivatization of free amino groups (DD(EDA) mol% from 70.0 to 30.0 mol%) were first synthesized, namely Hn. Then dexamethasone-loaded…

Whole membraneBone RegenerationDexamethasone; Electrospun nanofibers; GBR membranes; Hyaluronic acid alkylated.Nanofibers02 engineering and technologyHyaluronic acid alkylated01 natural sciencesPolyvinyl alcoholDexamethasoneGBR membranesHydrolysischemistry.chemical_compoundColloid and Surface ChemistryOsteogenesis0103 physical sciencesPhysical and Theoretical ChemistryHyaluronic AcidBone regenerationAlkylchemistry.chemical_classificationAqueous solutionMembranesElectrospun nanofibers010304 chemical physicsCyclodextrinMembranes ArtificialSurfaces and InterfacesGeneral Medicine021001 nanoscience & nanotechnologyReconstructive and regenerative medicine Radboud Institute for Molecular Life Sciences [Radboudumc 10]Membranechemistry0210 nano-technologyBiotechnologyNuclear chemistry
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Singular points of electrochemical impedance function

2004

A model of EIS response for a system with two consecutive monoelectron transfers is developed in this work. Relevant information on the mechanism of these electrochemical systems is provided by the parametrical identification of the theoretical faradaic impedance function. The kinetic parameters of this model are easily calculated through the calculus of the characteristic points of this function. This calculus allows to interpret the metals anodic dissolution according to the reaction mechanism and, therefore, allows us to establish easily the kinetic and thermodynamic behaviour of these systems with respect to any experimental parameter.

Work (thermodynamics)ChemistryFaradaic impedanceMathematical analysisAnalytical chemistryGeneral Physics and AstronomySurfaces and InterfacesGeneral ChemistryFunction (mathematics)Singular point of a curveCondensed Matter PhysicsKinetic energyElectrochemistrySurfaces Coatings and FilmsNyquist plotElectrical impedanceApplied Surface Science
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Thermodynamics and Kinetics of Adsorption of Gaseous Single Cl/Br-VOCs of the Ethane Series onto Siliceous ZSM-5 at 25 °C. Prediction of the Adsorpti…

2001

This work deals with a thermodynamic and kinetic experimental study of adsorption of gaseous single Cl/Br-VOCs (1,2-dichloroethane, 1-bromo-2-chloroethane, and 1,2-dibromoethane) onto siliceous ZSM-5 at 25 °C. The adsorbed amounts, adsorption heats, and diffusivities were simultaneously obtained. The isotherms were of the type I and verified Henry's law in a very large domain of filling. The adsorption heats and the diffusivities of the brominated molecules displayed specific behaviors probably owing to a transport resistance. The comparison of the relative position of isotherms and the adsorption heats allowed us to predict that the competitive adsorption of their mixture would be similar …

Work (thermodynamics)ChemistryKineticsThermodynamicsSurfaces and InterfacesCondensed Matter PhysicsKinetic energylaw.inventionGas phaseAdsorptionlawElectrochemistryMoleculePhysical chemistryGeneral Materials ScienceZSM-5DistillationSpectroscopyLangmuir
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