Search results for "scanning tunneling microscope"

showing 10 items of 127 documents

Voltammetry of microparticles, scanning electrochemical microscopy and scanning tunneling microscopy applied to the study of dsDNA binding and damage…

2014

Abstract Microparticulate deposits of scorpiand-like azamacrocyclic receptors (L1–L4) attached to graphite electrodes provide distinctive voltammetric features in contact with aqueous DNA solutions at biological pH, denoting the formation of DNA surface complexes. This voltammetry allows for screening dsDNA, ssDNA and G-Quadruplex DNA using L4-modified electrodes. Scanning electrochemical microscopy and scanning tunneling microscopy examination of dsDNA fibers attached to the substrate electrode in contact with DMSO solutions containing ferrocene and receptor indicate that a synergic effect is exerted between electrochemically generated ferrocenium ion and the receptors so that they increas…

ChemistryGeneral Chemical EngineeringSubstrate (chemistry)DNA SolutionsAnalytical Chemistrylaw.inventionCrystallographyScanning electrochemical microscopychemistry.chemical_compoundFerrocenelawElectrodeElectrochemistryBiophysicsScanning tunneling microscopeBinding siteVoltammetryJournal of Electroanalytical Chemistry
researchProduct

Probing DNA conductivity with photoinduced electron transfer and scanning tunneling microscopy.

2012

Abstract The possibility that the stacked DNA bases can mediate vectorial electron transfer has been examined using two different approaches. Experiments on photoinduced electron transfer with intercalated donors and acceptors (either randomly bound or linked dyads of ruthenium complex and viologen) indicate that while DNA may be a better medium than acetonitrile for electron transfer over short distances (2-3-base pair, equivalent to 10-14Å centre-to-centre separation), it is a poor medium for transport over larger separations. Attempts to measure conductivity of individual DNA molecules using scanning tunneling microscopy to image mixed monolayers of mercaptohexanol (MCH) and 30-mer or 10…

ChemistryViologenElectronsGeneral MedicineDNAPhotochemistryElectron transport chainPhotoinduced electron transferIntercalating Agentslaw.inventionElectron TransportElectron transferStructural BiologylawMicroscopy Scanning TunnelingMonolayerMicroscopymedicineNative stateScanning tunneling microscopeMolecular BiologyOxidation-Reductionmedicine.drugJournal of biomolecular structuredynamics
researchProduct

Quantum Well States in Two-Dimensional Gold Clusters on MgO Thin Films

2008

The electronic structure of ultra-small Au clusters on thin MgO/Ag(001) films has been analyzed by scanning tunneling spectroscopy and density functional theory. The clusters exhibit two-dimensional (2D) quantum well states, whose shapes resemble the eigen-states of a 2D electron gas confined in a parabolic potential. From the symmetries of the HOMO and LUMO of a particular cluster, its electron filling and charge state is determined. In accordance to a DFT Bader-charge analysis, aggregates containing up to twenty atoms accumulate one to four extra electrons due to a charge transfer from the MgO/Ag interface. The HOMO - LUMO gap is found to close for clusters containing between 70 and 100 a…

Condensed Matter - Materials ScienceMaterials scienceScanning tunneling spectroscopyMaterials Science (cond-mat.mtrl-sci)FOS: Physical sciencesGeneral Physics and AstronomyElectronic structureElectronlaw.inventionQuantum dotlawPhysics::Atomic and Molecular ClustersCluster (physics)Density functional theoryAtomic physicsScanning tunneling microscopeHOMO/LUMOPhysical Review Letters
researchProduct

Structural and Magnetic Properties of Co-Fe Binary Alloy Monolayers on W(110)

2003

We present an experimental investigation of ${\mathrm{C}\mathrm{o}}_{x}{\mathrm{F}\mathrm{e}}_{1\ensuremath{-}x}$ monolayers grown on flat and stepped W(110) surfaces. Atomically resolved scanning tunneling microscopy and low energy electron diffraction reveal continuous miscibility and pseudomorphic growth of Co and Fe for $0\ensuremath{\le}xl0.6$. We observe short range ordered ${\mathrm{C}\mathrm{o}\mathrm{F}\mathrm{e}}_{3}$-$p(2\ifmmode\times\else\texttimes\fi{}2)$ and CoFe-$c(2\ifmmode\times\else\texttimes\fi{}2)$ structures in the pseudomorphic monolayer. High Co concentrations lead to a phase separation. The Curie temperature and the ferromagnetic Kerr signal at low temperatures decr…

Condensed Matter::Materials ScienceCrystallographyMaterials scienceFerromagnetismCondensed matter physicsLow-energy electron diffractionlawBinary alloyMonolayerGeneral Physics and AstronomyCurie temperatureScanning tunneling microscopelaw.inventionPhysical Review Letters
researchProduct

Competition of Dzyaloshinskii-Moriya and Higher-Order Exchange Interactions in Rh/Fe Atomic Bilayers on Ir(111)

2018

Using spin-polarized scanning tunneling microscopy and density functional theory we demonstrate the occurrence of a novel type of noncollinear spin structure in $\mathrm{Rh}/\mathrm{Fe}$ atomic bilayers on Ir(111). We find that higher-order exchange interactions depend sensitively on the stacking sequence. For fcc-$\mathrm{Rh}/\mathrm{Fe}/\mathrm{Ir}(111)$, frustrated exchange interactions are dominant and lead to the formation of a spin spiral ground state with a period of about 1.5 nm. For hcp-$\mathrm{Rh}/\mathrm{Fe}/\mathrm{Ir}(111)$, higher-order exchange interactions favor an up-up-down-down ($\ensuremath{\uparrow}\ensuremath{\uparrow}\ensuremath{\downarrow}\ensuremath{\downarrow}$) s…

Condensed Matter::Quantum GasesPhysicsCondensed matter physicsMagnetic momentStackingGeneral Physics and Astronomy02 engineering and technologySpin structureType (model theory)021001 nanoscience & nanotechnology01 natural scienceslaw.inventionlaw0103 physical sciencesPhysics::Atomic and Molecular ClustersCondensed Matter::Strongly Correlated ElectronsDensity functional theoryScanning tunneling microscope010306 general physics0210 nano-technologySpin (physics)Ground statePhysical Review Letters
researchProduct

Monolayer Formation of Molybdenum Carbonyl on Cu(111) Revealed by Scanning Tunneling Microscopy and Density Functional Theory

2012

International audience; Molybdenum carbonyl Mo(CO)(6) was adsorbed on the Cu(111) surface at 160 K in the monolayer coverage range and studied by scanning tunneling microscopy. A well-ordered monolayer of hexacarbonyl molecules was observed experimentally for the first time. The monolayer has a hexagonal structure compatible with a (root 7 x root 7)R19 superlattice on the copper (111) plane. The arrangement and orientation of the molecules on the surface were determined by density functional theory calculations, including van der Waals interactions. The comparison of adsorption and cohesive energies reveals that the molecule-substrate interaction is stronger than the intermolecular one, whi…

DECOMPOSITIONADSORPTIONSuperlatticeAnalytical chemistrychemistry.chemical_element02 engineering and technologyHEXACARBONYL010402 general chemistry01 natural scienceslaw.inventionSYNCHROTRON-RADIATIONsymbols.namesakeAdsorptionlawMonolayerPhysical and Theoretical ChemistryMO(CO)(6)DEPOSITIONSPECTROSCOPYChemistryIntermolecular forceTIO2(110)PHOTODISSOCIATION021001 nanoscience & nanotechnologyMO0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsCrystallographyGeneral EnergyMolybdenumsymbolsDensity functional theoryScanning tunneling microscopevan der Waals force0210 nano-technology
researchProduct

Charge density waves in NbSe3: The models and the experimental evidence

2010

a b s t r a c t Charge density wave (CDW) ordering in the prototypical low-dimensional compound NbSe3 is reconsidered. It is shown that the model with two incommensurate modulations, q1 = (0, 0.241, 0) and q2 = (0.5, 0.260, 0.5), localized on type-III and type-I bi-capped trigonal prismatic columns, does not explain details, revealed by various microscopic methods. An alternative explanation, based on the existence of modulated layered nano-domains below both CDW onset temperatures, is suggested. It accounts for the presence of the q2 modulation in the STM images recorded above the T2 CDW transition and for the absence of q2 satellites in the corresponding diffraction patterns. The long per…

DiffractionCondensed matter physicslawChemistryModulation (music)Materials ChemistryCharge densityGeneral ChemistryScanning tunneling microscopeCondensed Matter PhysicsTrigonal prismatic molecular geometryCharge density wavelaw.inventionSolid State Communications
researchProduct

The Instability of the NbTe2 Surface Structure

2002

Low energy electron diffraction from clean NbTe 2 surfaces shows very diffuse reflections. The effect is attributed to an anisotropic heating of the irradiated Te-Nb-Te surface layer. Diffraction patterns for electron energies below 90 eV correspond to an overlapped contribution from numerous domains, belonging to three orientational variants. Electrons of higher energies stabilize the parent high-temperature CdI 2 structure. A similar effect is observed during scanning tunneling microscopy, where the expected surface corrugation is usually lost for tunneling currents of a few ten nA.

DiffractionLow-energy electron diffractionChemistryElectronCondensed Matter PhysicsMolecular physicsInstabilityElectronic Optical and Magnetic Materialslaw.inventionlawSurface layerScanning tunneling microscopeAtomic physicsAnisotropyQuantum tunnellingphysica status solidi (a)
researchProduct

Electromagnetic Singularities and Resonances in Near-Field Optical Probes

2007

Over the last two decades scanning near-field optical microscopy (SNOM) has demonstrated its ability to provide optical resolution significantly better than the diffraction limit (<20 nm). The general principle of SNOM relies on the approach of a nanometer-sized object in the optical near-field of a sample to be studied. This nano-object (NO) is usually the extremity of a probe. Regardless of the nature of the observed SNOM signal (inelastic scattering, fluorescence, etc.), the detection of the light is achieved in the far-field regime where the NO acts as a mediator between the optical near-field and the detector. Figure 1 is a schematic illustration of the SNOM principle.

DiffractionPhysicsbusiness.industryResolution (electron density)DetectorPhysics::OpticsNear and far fieldInelastic scatteringlaw.inventionOpticsOptical microscopelawNear-field scanning optical microscopeScanning tunneling microscopebusiness
researchProduct

Computation of the field diffracted by a local surface defect: application to tip–sample interaction in the photon scanning tunneling microscope

1996

We use a method based on the Fourier transform of the electromagnetic field to compute the field diffracted by a local deformation of a plane boundary surface. We give a complete development of each step of the technique. To show the interaction that exists between the probe of a near-field optical microscope and the observed sample, we use the model of a truncated cone-shaped tip above a rectangular surface defect. We compute the electrical intensity along a line located between the tip and the local surface defect. We show the influence of the polarization of the incident wave and the effect of the position of the tip with respect to the position of the surface defect.

Electromagnetic fieldPhysicsDiffractionPhotonbusiness.industryPolarization (waves)Atomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsMagnetic fieldlaw.inventionsymbols.namesakeOpticsFourier transformlawsymbolsNear-field scanning optical microscopeComputer Vision and Pattern RecognitionScanning tunneling microscopebusinessJournal of the Optical Society of America A
researchProduct