Search results for "Surfaces and interfaces"

showing 10 items of 939 documents

SAXS investigation on aggregation phenomena in supercritical CO2.

2004

Synchrotron Small-Angle X-Ray scattering (SAXS) measurements on aggregate formation of a Polyvinyl acetate- b-Perfluoro octyl acrylate (PVAc- b-PFOA) block copolymer in supercritical CO(2) are here reported. Experiments were carried out for a series of different thermodynamic conditions, changing the solvent density by profiling both the pressure at constant temperature and the temperature at constant pressure. This block copolymer and in general fluorocarbon-hydrocarbon di-blocks form aggregates depending on the value of CO(2) density. A sharp transition between monomers dissolved as random coils and micelles characterized by a solvophilic shell and a solvophobic core occurs when the CO(2)…

Polyvinyl acetateMaterials scienceSmall-angle X-ray scatteringBiophysicsThermodynamicsSurfaces and InterfacesGeneral ChemistryCritical valueMicelleSupercritical fluidCondensed Matter::Soft Condensed Matterchemistry.chemical_compoundchemistryCopolymerGeneral Materials ScienceSoft matterSolvophobicBiotechnologyThe European physical journal. E, Soft matter
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Measuring business performance in the metal finishing industry by combining theory with practice

2019

Little attention has been spent on the adaptation and implementation of theoretical Business Performance Measurement (BPM) models to specific industry and company contexts leading to a limited prac...

Process managementComputer science020209 energyMetals and Alloys02 engineering and technologySurfaces and InterfacesCondensed Matter PhysicsSurfaces Coatings and FilmsStrategy implementationMechanics of MaterialsManagement accounting0202 electrical engineering electronic engineering information engineeringPerformance measurementAdaptation (computer science)Management control systemTransactions of the IMF
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Complement proteins regulating macrophage polarisation on biomaterials

2019

[EN] One of the events occurring when a biomaterial is implanted in an host is the protein deposition onto its surface, which might regulate cell responses. When a biomaterial displays a compromised biocompatibility, distinct complement pathways can be activated to produce a foreign body reaction. In this article, we have designed different types of biomaterial surfaces to study the inflammation process. Here, we used different concentrations of (3-glycidoxypropyl)-trimethoxysilane (GPTMS), an organically-modified alkoxysilane as a precursor for the synthesis of various types of sol-gel materials functionalizing coatings for titanium implants to regulate biological responses. Our results sh…

ProteomicsCellBiocompatible Materials02 engineering and technology01 natural sciencesimmune responseMiceColloid and Surface ChemistryCIENCIA DE LOS MATERIALES E INGENIERIA METALURGICATitanium010304 chemical physicsChemistryhybrid sol-gelBiomaterialSurfaces and InterfacesGeneral MedicineSilanes021001 nanoscience & nanotechnologyInterleukin-10medicine.anatomical_structureReconstructive and regenerative medicine Radboud Institute for Molecular Life Sciences [Radboudumc 10]Rabbits0210 nano-technologyBiotechnologyComplement systemBiocompatibilitySurface PropertiesMacrophage polarizationmacrophage plasticityOsseointegrationHybrid sol-gelMacrophage plasticityImmune systemAll institutes and research themes of the Radboud University Medical Centerproteomicsdental implants0103 physical sciencesmedicineAnimalsSecretionParticle SizePhysical and Theoretical ChemistryImmune responsecomplement systemTibiaTumor Necrosis Factor-alphaMacrophagesDental implantsComplement System ProteinsComplement systemRAW 264.7 CellsBiophysics
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Unravelling the GLY-PRO-GLU tripeptide induced reconstruction of the Au(110) surface at the molecular scale

2018

International audience; The adsorption of GLY-PRO-GLU tripeptide on Au(110) is investigated within the frame of all atom classical mechanics simulations and Density Functional Theory, focusing on the surface reconstruction. It is shown that the tripeptide adsorption reorganizes and restructures the Au(110) surface. A mechanism for the surface restructuration is proposed for both the neutral and zwitterionic form of the peptide at room temperature in Ultra High Vacuum. Diverse residues may be involved in the Au atoms displacement, and in particular glutamic acid, triggering a double proton transfer and the formation of a zwitter ionic state, is found to be responsible for the triggering of t…

ProtonIonic bonding02 engineering and technologyTripeptideMolecular dynamics010402 general chemistryDFT01 natural sciencesMolecular dynamicsAdsorptionAtomMaterials Chemistry[CHIM]Chemical Sciences[PHYS.COND]Physics [physics]/Condensed Matter [cond-mat]ChemistrySurfaces and Interfaces021001 nanoscience & nanotechnologyCondensed Matter Physics0104 chemical sciencesSurfaces Coatings and FilmsGold surfaceCrystallographyAmino acidsDensity functional theoryPeptides0210 nano-technologySurface reconstructionSurface Science
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Patterning of Magnetic Bimetallic Coordination Nanoparticles of Prussian Blue Derivatives by the Langmuir–Blodgett Technique

2012

We report a novel method to prepare patterns of nanoparticles over large areas of the substrate. This method is based on the adsorption of the negatively charged nanoparticles dispersed in an aqueous subphase onto a monolayer of the phospholipid dipalmitoyl-l-α-phosphatidylcholine (DPPC) at the air-water interface. It has been used to prepare patterns of nanoparticles of Prussian blue analogues (PBA) of different size (K(0.25)Ni[Fe(CN)(6)](0.75) (NiFe), K(0.25)Ni[Cr(CN)(6)](0.75) (NiCr), K(0.25)Ni[Co(CN)(6)](0.75) (NiCo), Cs(0.4)Co[Cr(CN)(6)](0.8) (CsCoCr), and Cs(0.4)Co[Fe(CN)(6)](0.9) (CsCoFe)). The behavior of DPPC monolayer at the air-water interface in the presence of the subphase of P…

Prussian blueAqueous solutionBrewster's angleMaterials scienceNanoparticle02 engineering and technologySurfaces and Interfaces010402 general chemistry021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciencesLangmuir–Blodgett film0104 chemical sciencesCrystallographychemistry.chemical_compoundsymbols.namesakeAdsorptionchemistryMonolayerElectrochemistrysymbolsGeneral Materials Science0210 nano-technologyBimetallic stripSpectroscopyLangmuir
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Study of localized pulsed laser depassivation by interferometric probe

1997

Optical interferometry has been implemented as a novel approach to monitor sensitively the localized pulsed laser depassivation of iron or stainless steel samples. This new method, complementing the previous transient current measurements and channel flow double-electrode, is based on the time-resolved measurement of the rear surface displacement of the test sample induced by the laser generated ultrasonic wave. The removal of any material, such as the passive film, from the irradiated surface results in an enhancement of the longitudinal component of the laser generated ultrasonic wave, which is manifested in a change of the displacement characteristics of the rear surface of the test samp…

Pulsed laserMaterials sciencebusiness.industryGeneral Physics and AstronomySurfaces and InterfacesGeneral ChemistrySurface displacementCondensed Matter PhysicsLaserDisplacement (vector)Surfaces Coatings and FilmsOpen-channel flowlaw.inventionInterferometryOpticslawUltrasonic sensorIrradiationbusinessApplied Surface Science
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Monte Carlo simulation of block copolymers

2000

Monte Carlo simulations deal with crudely simplified but well-defined models and have the advantage that they treat the statistical thermodynamics of the considered model exactly (apart from statistical errors and problems due to finite size effects). Therefore, these simulations are well suited to test various approximate theories of block copolymer ordering, e.g. the self-consistent field theory. Recent examples of this approach include the study of block copolymer ordering at melt surfaces and confinement effects in thin films, adsorption of block copolymers at interfaces of unmixed homopolymer blends, the phase behavior of ternary mixtures of two homopolymers and their block copolymer, …

Quantitative Biology::BiomoleculesPolymers and PlasticsChemistryMonte Carlo methodSurfaces and InterfacesMicelleCondensed Matter::Soft Condensed MatterColloid and Surface ChemistryPhase (matter)CopolymerField theory (psychology)Self-assemblyStatistical physicsPhysical and Theoretical ChemistryTernary operationConfined space
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Phase diagram of a model adsorbate with internal quantum states

1992

Abstract An adsorbate in the strong binding and small corrugation limit is studied. The resulting two-dimensional fluid is treated in the adiabatic approximation: the translations of the heavy molecules are treated classically, whereas the molecular quantum degrees of freedom are modelled by interacting two state tunneling systems. The complete temperature/coverage phase diagram is obtained to a high degree of precision by a new combination of finite size scaling ideas with Path Integral Monte Carlo techniques. Even this simplified adsorbate model possesses a surprisingly complex phase diagram including first- and second-order transitions as well as tricritical and triple points. We identif…

Quantum phase transitionPhysicsCondensed matter physicsDegrees of freedom (physics and chemistry)Surfaces and InterfacesCondensed Matter PhysicsSurfaces Coatings and FilmsAdiabatic theoremQuantum statePhase (matter)Materials ChemistryPath integral Monte CarloQuantum tunnellingPhase diagramSurface Science
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Size Reduction of CdSe/ZnS Core−Shell Quantum Dots Photosensitized by Benzophenone: Where Does the Cd(0) Go?

2011

The size of core-shell CdSe/ZnS quantum dots can be decreased by using the combined action of an n,π* aromatic ketone and UVA light. Energy-dispersive X-ray spectroscopy as well as X-ray photoelectron spectroscopy techniques gave information on the photosensitization mechanism and the eventual destiny of Cd(2+) and Se(2-) core ions. Our data support the electron transfer from the BP ketyl radical to Cd(2+), leading to Cd(0) and H(+), as well as to the recovery of benzophenone. Elemental Cd remains on the core and, eventually, can be oxidized to CdO. In addition, Se(2-) counterions disperse inside the solution mainly attached to protonated amine ligands. The Se(2-) combines with H(+), leadin…

Quenching (fluorescence)ChemistryAnalytical chemistryNanoparticleSurfaces and InterfacesCondensed Matter PhysicsPhotochemistrychemistry.chemical_compoundElectron transferKetylX-ray photoelectron spectroscopyQuantum dotElectrochemistryBenzophenoneGeneral Materials ScienceSpectroscopySpectroscopyLangmuir
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The contribution of hydrogen peroxide to the radiosensitizing effect of gold nanoparticles

2019

Abstract Plasmid DNA in aerated aqueous solution is used as a probe to determine whose of the reactive oxygen species (ROS) generated after absorption of ultra-soft X-rays (USX) take part in biomolecule damage in the presence and in absence of Gold Nano-Particles (GNP) and specific scavengers. Citrate-coated GNPs with core sizes of 6, 10 and 25 nm are synthetized and characterized, especially in terms of plasmon band shift, ζ-potential and hydrodynamic radii (respectively 9, 21 and 30 nm). We confirm the radiosensitizing effect of GNP and show that the SSB number per plasmid increases when, for a same mass of gold element, the core size of the gold nanoparticles decreases. Hydroxyl radicals…

Radiation-Sensitizing AgentsFormatesRadicalMetal Nanoparticles02 engineering and technologyPhotochemistry01 natural sciencesCitric AcidMetalchemistry.chemical_compoundColloid and Surface ChemistryPyruvic Acid0103 physical sciences[CHIM]Chemical SciencesMoleculeDimethyl SulfoxideDNA Breaks Single-StrandedParticle SizeTromethaminePhysical and Theoretical ChemistryHydrogen peroxideComputingMilieux_MISCELLANEOUSchemistry.chemical_classificationReactive oxygen speciesQuenching (fluorescence)Aqueous solution010304 chemical physicsHydroxyl RadicalX-RaysFree Radical ScavengersHydrogen PeroxideSurfaces and InterfacesGeneral Medicine021001 nanoscience & nanotechnologySolutionschemistryColloidal goldvisual_artvisual_art.visual_art_mediumGold0210 nano-technologyPlasmidsBiotechnologyColloids and Surfaces B: Biointerfaces
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