Search results for "Microscopy"

showing 10 items of 3390 documents

Iron Oxide Superparticles with Enhanced MRI Performance by Solution Phase Epitaxial Growth

2018

Organized three-dimensional (3D) nanomaterial architectures are promising candidates for applications in optoelectronics, catalysis, or theranostics owing to their anisotropy and advanced structural features that allow tailoring their physical and chemical properties. The synthesis of such complex but well-organized nanomaterials is difficult because the interplay of interfacial strain and facet-specific reactivity must be considered. Especially the magnetic anisotropy with controlled size and morphology plays a decisive role for applications like magnetic resonance imaging (MRI) and advanced data storage. We present a solution phase seed mediated synthesis of colloidal, well dispersible ir…

Materials scienceGeneral Chemical EngineeringIron oxideMaghemiteNanotechnology02 engineering and technologyGeneral ChemistryHematiteengineering.material010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesNanomaterialschemistry.chemical_compoundMagnetic anisotropychemistryTransmission electron microscopyvisual_artMaterials Chemistryvisual_art.visual_art_mediumengineeringNanorod0210 nano-technologyAnisotropyChemistry of Materials
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Application of electrochemical impedance for characterising arrays of Bi2S3 nanowires

2015

Abstract Electrochemical Impedance Spectroscopy (EIS) was used to characterise the electrical properties of bismuth sulphide (Bi2S3) nanowires (NWs) templated within anodic aluminium oxide (AAO) membranes. A specially engineered cell, with a nominal electrolyte volume of 0.1–0.2 ml, was used to hold and measure the electrochemical impedance of the fragile NW/AAO samples. An equivalent circuit model was developed to determine the filling density of nanowires within the porous templates. The EIS method can be utilised to probe the nanowire filling density in porous membranes over large sample areas, which is often unobtainable using electron microscopy and conductive atomic force microscopy t…

Materials scienceGeneral Chemical EngineeringNanowirechemistry.chemical_elementNanotechnologyGrowthElectrical characterizationBismuthchemistry.chemical_compoundElectrochemical Impedance SpectroscopyFabricationElectrodepositionElectrochemistryPorosityElectrical impedanceBismuth sulphideMetalTemplateConductive atomic force microscopyOxide nanowireDielectric spectroscopyNanostructuresNanowireMembranechemistryAluminium oxideAnodic aluminium oxide
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High-Pressure Synthesis of Novel Boron Oxynitride B6N4O3 with Sphalerite Type Structure

2015

A novel crystalline boron oxynitride (BON) phase has been synthesized under static pressures exceeding 15 GPa and temperatures above 1900 °C, from molar mixtures of B2O3 and h-BN. The structure and composition of the synthesized product were studied using high-resolution transmission electron microscopy, electron diffraction, automated diffraction tomography, energy dispersive X-ray spectroscopy and electron energy-loss spectroscopy (EELS). BON shows a hexagonal cell (R3m, Z = 3) with lattice parameters a = 2.55(5) A and c = 6.37(13) A, and a crystal structure closely related to the cubic sphalerite type. The EELS quantification yielded 42 at % B, 35 at % N, and 23 at % O (B:N:O ≈ 6:4:3). E…

Materials scienceGeneral Chemical Engineeringchemistry.chemical_elementGeneral ChemistryElectronic structureCrystal structureengineering.materialCrystallographySphaleriteElectron diffractionchemistryTransmission electron microscopyMaterials ChemistryengineeringDensity functional theoryBoronSpectroscopy
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Routing Design in Wireless Sensor Networks and a Solution for Healthcare Environments

2011

This work presents the software implementation of a tissue engineering image analysis tool through the study of several biomaterials by means of different microscopy techniques (optical, scanning electron, and atomic force microscopy). With this tool, different quantitative information has been extracted from the microscopy image analysis of these biomaterials, as the number of objects, their mean size and the area they cover. Morphological characteristics, as the roundness or the porosity have been also obtained. All these quantitative information has permitted an statistical analysis over the obtained results.

Materials scienceGeneral Computer Sciencebusiness.industryImage processingImage segmentationRoundness (object)SoftwareTissue engineeringDigital image processingMicroscopyStatistical analysisComputer visionArtificial intelligenceElectrical and Electronic EngineeringbusinessBiomedical engineeringIEEE Latin America Transactions
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Sequential and site-specific on-surface synthesis on a bulk insulator

2013

cited By 15; International audience; The bottom-up construction of functional devices from molecular building blocks offers great potential in tailoring materials properties and functionality with utmost control. An important step toward exploiting bottom-up construction for real-life applications is the creation of covalently bonded structures that provide sufficient stability as well as superior charge transport properties over reversibly linked self-assembled structures. On-surface synthesis has emerged as a promising strategy for fabricating stable, covalently bound molecular structure on surfaces. So far, a majority of the structures created by this method have been obtained from a rat…

Materials scienceGeneral EngineeringGeneral Physics and Astronomybulk insulating substrateInsulator (electricity)Nanotechnology02 engineering and technologySolution chemistry010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences5300104 chemical sciencesmicroscopyMolecule[CHIM]Chemical SciencesGeneral Materials Scienceon-surface synthesis0210 nano-technologynoncontact atomic force
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Plastic Deformation of Single Nanometer-Sized Crystals

2008

We report in situ electron microscopy observations of the plastic deformation of individual nanometer-sized Au, Pt, W, and Mo crystals. Specifically designed graphitic cages that contract under electron irradiation are used as nanoscopic deformation cells. The correlation with atomistic simulations shows that the observed slow plastic deformation is due to dislocation activity. Our results also provide evidence that the vacancy concentration in a nanoscale system can be smaller than in the bulk material, an effect which has not been studied experimentally before.

Materials scienceGeneral Physics and Astronomy02 engineering and technology021001 nanoscience & nanotechnology01 natural sciencesVacancy defect0103 physical sciencesElectron beam processingNanometreComposite materialDislocationDeformation (engineering)010306 general physics0210 nano-technologyHigh-resolution transmission electron microscopyNanoscopic scaleIn situ electron microscopyPhysical Review Letters
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Mechanical properties of MDCK II cells exposed to gold nanorods

2015

Background: The impact of gold nanoparticles on cell viability has been extensively studied in the past. Size, shape and surface functionalization including opsonization of gold particles ranging from a few nanometers to hundreds of nanometers are among the most crucial parameters that have been focussed on. Cytoxicity of nanomaterial has been assessed by common cytotoxicity assays targeting enzymatic activity such as LDH, MTT and ECIS. So far, however, less attention has been paid to the mechanical parameters of cells exposed to gold particles, which is an important reporter on the cellular response to external stimuli.Results: Mechanical properties of confluent MDCK II cells exposed to go…

Materials scienceGeneral Physics and AstronomyNanotechnologylcsh:Chemical technologylcsh:TechnologyFull Research Papermembrane tensionNanomaterialsMicroscopyNanotechnologylcsh:TP1-1185General Materials ScienceElectrical and Electronic Engineeringlcsh:Scienceatomic force microscopylcsh:TCTABQuartz crystal microbalanceDynamic mechanical analysisgold nanorodslcsh:QC1-999NanoscienceMembraneColloidal goldQCMMDCK II cellsBiophysicsSurface modificationlcsh:QNanorodlcsh:PhysicsBeilstein Journal of Nanotechnology
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Influence of saline and pH on collagen type I fibrillogenesis in vitro: Fibril polymorphism and colloidal gold labelling

2007

We have produced different collagen type I fibrils by in vitro fibrillogenesis of acetic acid-soluble collagen within the pH range 2.5-9.0, in the presence and absence of 150 mM NaCl. The varying relatively stable molecular assemblies and polymorphic fibrillar end-products produced after 24 h incubation have been assessed and compared by the TEM study of specimens negatively stained with uranyl acetate. In the presence of 150 mM NaCl, the assembly of collagen at low pH (2.5) leads to the formation of initial molecular aggregates that progressively link together at slightly higher pH (5.0) to form sub-fibrils and spindle-shaped D-banded bundles of sub-fibrils. At pH 6.0 these D-banded bundle…

Materials scienceGeneral Physics and AstronomyUranyl acetateFibrillogenesisGold ColloidCell BiologyHydrogen-Ion ConcentrationIn Vitro TechniquesSodium ChlorideFibrilNegative stainCollagen Type IRatsGold ColloidMicroscopy ElectronCrystallographychemistry.chemical_compoundchemistryStructural BiologyColloidal goldSide chainAnimalsGeneral Materials ScienceTromethamineBiomineralizationMicron
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Geometric Analysis of Type B Aortic Dissections Shows Aortic Remodeling After Intervention Using Multilayer Stents

2020

Recently, multilayer stents for type B aortic dissections (TBAD) have been proposed to decrease false lumen flow, increase and streamline true lumen flow, and retain branch vessel patency. We aimed to provide a protocol with standardized techniques to investigate aortic remodeling of TBAD by multilayer flow modulators (MFM) in static geometric and hemodynamic analyses. Combining existing literature and new insights, a standardized protocol was designed. Using pre- and postoperative CT scans, geometric models were constructed, lumen dimensions were calculated, computational fluid dynamics (CFD) models were composed, and velocity and pressures were calculated. Sixteen TBAD cases treated with …

Materials scienceGeometric analysisHemodynamics3d modelcomputational fluid dynamics030204 cardiovascular system & hematologylcsh:TechnologyArticle03 medical and health sciences0302 clinical medicinemedicineMedical imagingGeneral Materials Scienceaortic dissectionlcsh:Microscopylcsh:QC120-168.85Aortic dissectionlcsh:QH201-278.5multilayer flow modulatorlcsh:Tmedicine.diseaseaortic remodelinggeometric analysisLumen DiameterFlow velocitylcsh:TA1-2040lcsh:Descriptive and experimental mechanicslcsh:Electrical engineering. Electronics. Nuclear engineeringlcsh:Engineering (General). Civil engineering (General)lcsh:TK1-9971030217 neurology & neurosurgeryBiomedical engineeringLumen (unit)Materials
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Upconversion luminescence in transparent oxyfluoride glass ceramics containing hexagonal NaErF4

2019

The authors wish to express gratitude to K. Smits for TEM measurements. This research is funded by the Latvian Council of Science, project “Novel transparent nanocomposite oxyfluoride materials for optical applications”, project No. LZP-2018/1-0335. GK wishes to expresses gratitude to Arnis Riekstins "MikroTik" donation. Donations are administered by the University of Latvia Foundation. © 2019. This work is licensed under a CC BY-NC-ND 4.0 license.

Materials scienceGlass ceramicsAnalytical chemistry02 engineering and technology010402 general chemistry01 natural sciences7. Clean energyIonMaterials Chemistry:NATURAL SCIENCES:Physics [Research Subject Categories]CeramicSpectroscopyOxyfluorideSite-selective spectroscopyMechanical EngineeringMetals and AlloysRate equation021001 nanoscience & nanotechnologyPhoton upconversion0104 chemical sciencesMicrocrystallineNanocrystalMechanics of MaterialsTransmission electron microscopyvisual_artvisual_art.visual_art_medium0210 nano-technologyNaErF4Upconversion
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