Search results for "Monolayer"

showing 10 items of 584 documents

Mo(CO)6 dissociation on Cu(111) stimulated by a Scanning Tunneling Microscope

2013

Abstract The surface of Cu(111) was exposed to molybdenum hexacarbonyl Mo(CO)6 with monolayer coverage at temperature 160 K and studied by a Scanning Tunneling Microscope. The monolayer structure has a hexagonal arrangement and forms a (√7 × √7) R19 superlattice on the copper (111) plane. Upon repeated scanning the monolayer is transformed into a (1 × 2) superstructure with 3-fold oriented domains. The domains of (1 × 2) superstructure can change orientation under scanning according to 3-fold surface symmetry. From analysis of the domain mobility, it follows that CO groups of carbonyl fragments are organized in the (1 × 2) superstructure conditioning the domain reorientation. The observed s…

Hexagonal crystal systemSuperlatticechemistry.chemical_elementSurfaces and InterfacesCondensed Matter PhysicsCopperMolybdenum hexacarbonylDissociation (chemistry)Surfaces Coatings and Filmslaw.inventionchemistry.chemical_compoundCrystallographychemistrylawMonolayerMaterials ChemistrySurface structureScanning tunneling microscopeSurface Science
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Rapid Surface Functionalization of Hydrogen-Terminated Silicon by Alkyl Silanols

2017

Surface functionalization of inorganic semiconductor substrates, particularly silicon, has focused attention toward many technologically important applications, involving photovoltaic energy, biosensing and catalysis. For such modification processes, oxide-free (H-terminated) silicon surfaces are highly required, and different chemical approaches have been described in the past decades. However, their reactivity is often poor, requiring long reaction times (2-18 h) or the use of UV light (10-30 min). Here, we report a simple and rapid surface functionalization for H-terminated Si(111) surfaces using alkyl silanols. This catalyst-free surface reaction is fast (15 min at room temperature) and…

HydrogenSiliconSilici Compostoschemistry.chemical_element02 engineering and technology010402 general chemistryPhotochemistry01 natural sciencesBiochemistryCatalysisArticleQuímica de superfíciesCatalysisColloid and Surface ChemistryMonolayerLife ScienceOrganic chemistryReactivity (chemistry)AlkylVLAGchemistry.chemical_classificationOrganic ChemistryGeneral ChemistryPolymer021001 nanoscience & nanotechnologyOrganische Chemie0104 chemical scienceschemistrySurface modification0210 nano-technologyJournal of the American Chemical Society
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Biopolymeric bilayer films produced by co-extrusion film blowing

2018

Abstract Biodegradable packaging promises a more environmentally friendly future. Nevertheless, a single biopolymer often lacks of some important properties. In order to contribute to this challenge, biodegradable bilayer films from poly(lactic acid) (PLA) and MaterBi® were prepared in this work and compared with monolayer films obtained with both the polymers. The prepared films were fully characterized through morphological, mechanical, thermal, chemical, optical and water contact angle analyses. Furthermore, the hydrolytic degradation of monolayer and bilayer films was studied by performing tests at three different pH. The morphological analysis revealed that PLA/MaterBi bilayer films sh…

Hydrolytic degradationMaterials sciencePolymers and Plastics02 engineering and technologyengineering.material010402 general chemistry01 natural sciencesContact anglechemistry.chemical_compoundMonolayerPolymer chemistrychemistry.chemical_classificationpHBilayerOrganic ChemistryPolymer021001 nanoscience & nanotechnology0104 chemical sciencesLactic acidchemistryChemical engineeringBilayer filmengineeringBiodegradablePLADegradation (geology)BiopolymerElongation0210 nano-technologyMelt processingPolymer Testing
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Optical Gating of Photosensitive Synthetic Ion Channels

2011

4-oxo-4-(pyren-4-ylmethoxy) butanoic acid is used as a photolabile protecting group to show the optical gating of nanofluidic devices based on synthetic ion channels. The inner surface of the channels is decorated with monolayers of photolabile hydrophobic molecules that can be removed by irradiation, which leads to the generation of hydrophilic groups. This process can be exploited in the UV-light-triggered permselective transport of ionic species in aqueous solution through the channels. The optical gating of a single conical nanochannel and multichannel polymeric membranes is characterised experimentally and theoretically by means of current-voltage and selective permeation measurements,…

Hydrophilic groupsMaterials scienceSynthetic ion channelsLight sensitive materialsHydrophobicitySynthetic membraneNanotechnologyNano-fluidic devicesGatingIonIonic transportsBiomaterialsPolymeric membranesOptical gatingPhotosensitivityOptical gatingsSynthetic ion channelsMonolayerElectrochemistryControlled releasePhotolabile protecting groupsIonic speciesPolymer membranesHydrophobic moleculesFunctional polymersSelective permeationHydrophilicityMultifunctional devicesMonolayersIonsAqueous solutionCurrent rectificationUV-light irradiationMulti-channelPermeationCondensed Matter PhysicsNanostructuresElectronic Optical and Magnetic MaterialsData processingPhotosensitive nanostructuresFISICA APLICADAIrradiationNano channelsInner surfacesFunctional polymersCurrent voltageAdvanced Functional Materials
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Exploring the atomic structure of 1.8 nm monolayer-protected gold clusters with aberration-corrected STEM

2017

Abstract Monolayer-protected (MP) Au clusters present attractive quantum systems with a range of potential applications e.g. in catalysis. Knowledge of the atomic structure is needed to obtain a full understanding of their intriguing physical and chemical properties. Here we employed aberration-corrected scanning transmission electron microscopy (ac-STEM), combined with multislice simulations, to make a round-robin investigation of the atomic structure of chemically synthesised clusters with nominal composition Au 144 (SCH 2 CH 2 Ph) 60 provided by two different research groups. The MP Au clusters were “weighed” by the atom counting method, based on their integrated intensities in the high …

Icosahedral symmetrymonolayer-Protected Gold Clusters02 engineering and technology010402 general chemistry01 natural sciencesMolecular physicsatomic structureatom counting methodMonolayerScanning transmission electron microscopyAu144(SR)60ta116InstrumentationQuantumaberration-Corrected STEMRange (particle radiation)ta114Chemistry021001 nanoscience & nanotechnologyDark field microscopyAtomic and Molecular Physics and Optics0104 chemical sciencesElectronic Optical and Magnetic MaterialsAmorphous solidExponentAtomic physics0210 nano-technologyUltramicroscopy
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Incorporation of membrane proteins into lipid surface monolayers: Characterization by fluorescence and electron microscopies

2007

The preparation of oriented protein samples is an attractive goal, e.g., to gain more detailed information from spectroscopic experiments. Our approach towards this aim was to prepare monolayers of phospholipids at the air-water interface and to incorporate the proteins into these ordered structures. Subsequently, we used the Langmuir-Boldgett (LB) transfer technique to obtain samples of oriented proteins on solid supports. — Incorporation was achieved by spreading the proteins from a detergent solution onto a prespread lipid monolayer on the water surface. We characterized successful incorporation by in situ fluoresence microscopy and by electron microscopy, and investigated the topology o…

In situCrystallographyMembrane proteinlawChemistryPhase (matter)MonolayerMicroscopyFluorescence microscopeBiophysicsElectron microscopeFluorescencelaw.invention
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Nanomechanical cleavage of molybdenum disulphide atomic layers.

2014

The discovery of two-dimensional materials became possible due to the mechanical cleavage technique. Despite its simplicity, the as-cleaved materials demonstrated surprising macrocontinuity, high crystalline quality and extraordinary mechanical and electrical properties that triggered global research interest. Here such cleavage processes and associated mechanical behaviours are investigated by a direct in situ transmission electron microscopy probing technique, using atomically thin molybdenum disulphide layers as a model material. Our technique demonstrates layer number selective cleavage, from a monolayer to double layer and up to 23 atomic layers. In situ observations combined with mole…

In situMultidisciplinaryMaterials scienceta114General Physics and Astronomychemistry.chemical_elementNanotechnologyCleavage (crystal)02 engineering and technologyGeneral Chemistry010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologySurface energy0104 chemical sciencesStrain energyMolecular dynamicschemistryMolybdenumHomogeneousChemical physicsMonolayer0210 nano-technologyNature communications
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Structural variations as a function of surface adsorption in nanostructured particles

2004

Macroscopic (adsorption isotherm and micro-calorimetry measurement) and microscopic (in situ X-ray diffraction and IR spectroscopy) approaches were used to study the influence of water adsorption on γ-Fe 2 O 3 nanoparticles. A nonmonotonic variation of γ-Fe 2 O 3 lattice parameter is revealed when the relative water pressure (p/p 0 ) increases from 0.03 to 0.96 with a maximum deviation for p/p 0 0.1. With IR spectroscopy, similar results were observed since a modification of γ-Fe 2 O 3 structural bands has been shown. In situ investigations as well as thermodynamics considerations lead to one important conclusion: the variation of the lattice parameter is in relation with the strains induce…

In situSurface (mathematics)DiffractionLattice constantAdsorptionChemistryMonolayerMaterials ChemistryNanoparticlePhysical chemistryInfrared spectroscopyPhysical and Theoretical ChemistrySurfaces Coatings and Films
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Copper(I) pseudorotaxane monolayers assembled on gold electrodes.

2003

Two new copper (I) pseudorotaxanes bearing a thioctic acid appended unit have been prepared and deposited onto a gold electrode surface, leading to surface-attached electroactive pseudorotaxanes.

Inorganic ChemistryThioctic AcidChemistryElectrodeInorganic chemistryPolymer chemistryMonolayerchemistry.chemical_elementPhysical and Theoretical ChemistryCopperInorganic chemistry
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Double layer potential and degree of dissociation in charged lipid monolayers

2000

Abstract One of the contributions to the surface potential in charged phospholipid monolayers at air–water interfaces is the double layer potential. In this note several misconceptions found in the literature concerning the relationship between the double layer potential and the degree of dissociation of the lipid polar headgroups are critically analyzed. The deviations of the double layer potential measurements from the Gouy–Chapman theory observed by several authors are explained by taking into account the dependence of the degree of dissociation with concentration, area per lipid molecule and pH.

IonsChemistryStereochemistryAirOrganic ChemistryTemperaturePhospholipidCell BiologyHydrogen-Ion ConcentrationLipid monolayerBiochemistryElectrolytesMembrane Lipidschemistry.chemical_compoundModels ChemicalChemical physicsMonolayerPolarlipids (amino acids peptides and proteins)Double layer potentialLipid moleculeMolecular BiologyPhospholipidsStearic AcidsChemistry and Physics of Lipids
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