Search results for "Electron microscope"

showing 10 items of 784 documents

Energy conversion efficiency in betavoltaic cells based on the diamond Schottky diode with a thin drift layer

2020

The HPHT diamond Schottky diode was assembled as a Metal/Intrinsic/p-doped structure betavoltaic cell (BC) with a very thin (1 μm) drift layer and tested under 5–30 keV electron beam irradiation using a scanning electron microscope (SEM). The effect of the β-radiation energy and the backscattering of electrons on the energy conversion was studied. From the results obtained, it is shown that, the efficiency of the investigated BC increases from 1.01 to 3.75% with the decrease of β-particle energy from 30 to 5 keV due to an increase of the electron beam absorption in a thin drift layer. Maximum efficiency is achieved when the electron beam energy is close to the average β-decay energy of 3H. …

betavoltaicparistotMaterials scienceScanning electron microscopebeetasäteilyElectronengineering.material010403 inorganic & nuclear chemistry01 natural sciences030218 nuclear medicine & medical imaging03 medical and health sciences0302 clinical medicinediamondEnergy transformationSchottky diodeAbsorption (electromagnetic radiation)Radiationbusiness.industryEnergy conversion efficiencySchottky diodeDiamond0104 chemical sciencesenergy conversion efficiencythin drift layerCathode rayengineeringOptoelectronicsdioditbusinesstimantti
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New Polylactic Acid Composites Reinforced with Artichoke Fibers

2015

In this work, artichoke fibers were used for the first time to prepare poly(lactic acid) (PLA)-based biocomposites. In particular, two PLA/artichoke composites with the same fiber loading (10% w/w) were prepared by the film-stacking method: the first one (UNID) reinforced with unidirectional long artichoke fibers, the second one (RANDOM) reinforced by randomly-oriented long artichoke fibers. Both composites were mechanically characterized in tensile mode by quasi-static and dynamic mechanical tests. The morphology of the fracture surfaces was analyzed through scanning electron microscopy (SEM). Moreover, a theoretical model, i.e., Hill's method, was used to fit the experimental Young's modu…

biocompositeScanning electron microscopy (SEM)Materials scienceMorphology (linguistics)Scanning electron microscopequasi-static tensile testsDynamic mechanical analysis (DMA)Moduluslcsh:TechnologyArticlefilm stackingFilm stackingQuasi-static tensile testschemistry.chemical_compoundMaterials Science(all)Polylactic acidArtichoke fiberPLA; artichoke fiber; biocomposites; film stacking; quasi-static tensile tests; dynamic mechanical analysis (DMA); scanning electron microscopy (SEM)Ultimate tensile strengthmedicinescanning electron microscopy (SEM).General Materials ScienceFiberComposite materiallcsh:Microscopylcsh:QC120-168.85biocompositesBiocompositesartichoke fiberlcsh:QH201-278.5lcsh:TPLA; artichoke fiber; biocomposites; film stacking; quasi-static tensile tests; dynamic mechanical analysis (DMA); scanning electron microscopy (SEM).Stiffnessdynamic mechanical analysis (DMA)Settore ING-IND/22 - Scienza E Tecnologia Dei Materiali/dk/atira/pure/subjectarea/asjc/2500chemistrylcsh:TA1-2040PLAlcsh:Descriptive and experimental mechanicslcsh:Electrical engineering. Electronics. Nuclear engineeringmedicine.symptomscanning electron microscopy (SEM)lcsh:Engineering (General). Civil engineering (General)lcsh:TK1-9971quasi-static tensile testMaterials
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Follicle Cells of Styela plicata Eggs (Ascidiacea)

2001

Styela plicata eggs are surrounded by large follicle cells that at LM appear as highly vacuolated and columnar in shape; at the apical end of each cell lies a very large and clear vacuole, half of which extends inward. Electron microscope observations show a Single layer of largely spaced box-like follicle cells; the close cell-cell contact at their base is realized by interdigitations. The cell surface shows a peculiar structure, more developed in the latero-basal regions, consisting of a complex of membrane extensions, i.e. microvilli, filopodia and lamellipodia. Filopodia irradiate in all directions towards the adjacent cells and the outermost vitelline coat, thus creating a complex netw…

biologyChemistryVacuoleApical membranebiology.organism_classificationlaw.inventionCell biologyFollicleStyela plicatalawSecretionElectron microscopeLamellipodiumFilopodia
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Protection of living yeast cells by micro-organized shells of natural polyelectrolytes

2015

International audience; Saccharomyces cerevisiae, a eukaryotic model organism, plays a key role in the oxidative stability of fermented products. In order to protect cells against environmental stresses, we report a method of modifying the cell surface architecture while maintaining the internal working properties of the system. The objective was to encapsulate living yeast cells in micro-organized polyelectrolyte shells using layer-by-layer (LbL) assembly. For the first time, the natural polyelectrolytes, β-lactoglobulin and sodium alginate, were alternately deposited on the surface of S. cerevisiae. Transmission electron microscopy coupled with immune-cytochemistry and scanning electron m…

biologyScanning electron microscopeChemistrySaccharomyces cerevisiaeLayer by layerBioengineeringSaccharomyces cerevisiaebiology.organism_classificationLayer-by-layerβ-LactoglobulinApplied Microbiology and BiotechnologyBiochemistryPolyelectrolyteYeastBiochemistryFTIRTransmission electron microscopyFreezing[SDV.IDA]Life Sciences [q-bio]/Food engineeringBiophysicsFermentation[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringFourier transform infrared spectroscopyImmuno-electron microscopy
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Microspectroscopy and spectromicroscopy with photoemission electron microscopy using a new kind of imaging energy filter

2001

The use of an imaging retarding field analyser attached to the FOCUS IS-PEEM is described. This kind of energy filter is a simple, powerful tool to obtain microspectra from areas of down to about 1 μm using (V)UV and X-ray excitation sources. First results of microspectroscopy measured by excitation with a laboratory as well as a synchrotron X-ray source are presented.

business.industryChemistryAnalyserSynchrotron radiationSurfaces and InterfacesCondensed Matter PhysicsSynchrotronSurfaces Coatings and Filmslaw.inventionPhotoemission electron microscopyOpticsX-ray photoelectron spectroscopyFilter (video)lawMaterials ChemistryElectron microscopebusinessExcitationSurface Science
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High resolution electron microscopy of liquid crystalline polymers

1990

Les images de microscopie electronique a haute resolution des polymeres cristaux liquides calamitiques [CO−CH(R)−CO 2 −(CH 2 ) 6 −OPh−N:N−PhO−(CH 2 ) 6 −O] n (R=CH 2 −CH=CH 2 , (CH 2 ) 6 −O−Ph N=N−Ph−CN) et discotique poly (hexadecanedioate de triphenylene) sont simulees sur ordinateur et comparees avec les structures obtenues a partir des resultats experimentaux de diffraction electronique. Une theorie est developpee pour expliquer le bon accord observe

chemistry.chemical_classificationAzo polymerChemistryLiquid crystallineDiscotic liquid crystalHigh resolutionPolymerlaw.inventionHigh resolution electron microscopylawLiquid crystalPolymer chemistryPhysical chemistryElectron microscopeJournal de Physique
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Studies of the Ca4Mn3O10structure obtained using high pressure and high temperature

2002

An ideal n = 3 member of the group of Ruddlesden?Popper (RP) phases Ca4Mn3O10 was obtained by solid-state reaction under high pressure. This phase has been studied by transmission electron microscopy, convergent beam electron microscopy, high-resolution transmission electron microscopy, and parallel electron energy-loss spectroscopy. The lattice parameters are derived as a = b = 0.37 nm and c = 2.69 nm with the space group I4/mmm, which is the space group of the ideal RP phase.

chemistry.chemical_classificationChemistryCrystal chemistryManganateAnalytical chemistryElectronCondensed Matter Physicslaw.inventionchemistry.chemical_compoundNuclear magnetic resonanceElectron diffractionlawTransmission electron microscopyGeneral Materials ScienceElectron microscopeSpectroscopyInorganic compoundJournal of Physics: Condensed Matter
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Packings of an unidimensional regular pore structure as model packings in size-exclusion and inverse size-exclusion chromatography

1996

Using porous aluminas and aluminosilicates with a regular and well-defined pore structure an attempt was made to correlate the SEC data of polystyrenes with established theoretical models. The pore structure of the two types of packings was extensively characterized by means of transmission and scanning electron microscopy, nitrogen sorption and mercury porosimetry. The SEC distribution coefficients measured experimentally were correlated with the distribution coefficients calculated from the theoretical models for flexible polymers. A good correlation was observed for the packing of the simplest pore morphology, but remarkable deviations appeared for the materials with a more complex pore …

chemistry.chemical_classificationChromatographyChemistryScanning electron microscopeOrganic ChemistrySize-exclusion chromatographyInverseSorptionGeneral MedicinePolymerPorosimetryBiochemistryAnalytical ChemistryGel permeation chromatographyPorosityJournal of Chromatography A
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Non-porous polybutadiene-coated silicas as stationary phases in reversed-phase chromatography

1990

Abstract Non-porous silica of mean particle diameter 1.7 μm (Monospher) was coated with polybutadiene (PBD) following a published procedure. The silicas were prepared with graduated polymer loads up to 8% (w/w). Examination of the PBD-coated packings by means of electron spectroscopy for chemical analysis, scanning electron microscopy, diffuse reflection infrared fourier transform spectroscopy and differential thermal gravimetry indicated that the optimum polymer load was between 1 and 3% (w/w) with regard to a dense coverage corresponding to an average layer thickness of about 4 nm. No silanophilic interactions could be monitored using 1–3% (w/w) coated silicas under reversed-phase conditi…

chemistry.chemical_classificationChromatographyScanning electron microscopeOrganic ChemistryAnalytical chemistryGeneral MedicinePolymerReversed-phase chromatographyBiochemistryElectron spectroscopyFourier transform spectroscopyAnalytical ChemistryPolybutadienechemistryDiffuse reflectionPorosityJournal of Chromatography A
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Polymer-coated reversed-phase packings in high-performance liquid chromatography

1993

The synthesis and properties of polymer-coated RP stationary phases are reviewed. The sorbents are classified according to the method of synthesis. More flexibility in the tailoring of polymer-coated packings is noted. The impact of the polymer coating on the porosity of the oxides to be modified and their chromatographic properties is discussed.

chemistry.chemical_classificationChromatographyScanning electron microscopeOrganic ChemistryGeneral MedicineReversed-phase chromatographyPolymerBiochemistryHigh-performance liquid chromatographyAnalytical ChemistrychemistryPhase (matter)Polymer coatingPorosityJournal of Chromatography A
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