Search results for " diffraction"

showing 10 items of 896 documents

Microstructural analysis (Voigt function method) of mullite in whiteware triaxial porcelains

2020

Triaxial porcelains were produced of two whiteware blends containing kaolin B (of “high-crystallinity” kaolinite) or halloysitic kaolin M (also with “low-crystallinity” kaolinite) in two different industrial firing cycles (fast or slow) with final temperatures 1270 °C, 1300 °C, 1320 °C and 1340 °C. The crystalline microstructure of mullite in all porcelain samples was studied by X-ray diffraction through analysing 110 and 001 reflections using the Voigt function method and by optical and electron microscopy. Mean crystallite sizes were determined independently for both 110 and 001 diffraction directions as principal semi-quantitative characteristics for all sixteen specimens. They illustrat…

DiffractionMaterials science020101 civil engineeringMullite02 engineering and technologyengineering.materialWhitewareCrystallite sizeHalloysite0201 civil engineeringGeochemistry and PetrologyKaoliniteComposite materialMicrostructureVoigt profileTriaxial porcelainKaolinite crystallinityGeologyHalloysite021001 nanoscience & nanotechnologyMicrostructureX-ray diffractionMulliteX-ray crystallographyengineeringCrystallite0210 nano-technology
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A multi-technique, micrometer- to atomic-scale description of a synthetic analogue of chukanovite, Fe-2(CO3)(OH)(2)

2014

International audience; A synthetic analogue of chukanovite Fe-2(CO3)(OH)(2) is formed during experimental work on iron-clay interactions simulating the cooling of containers in radioactive waste repositories. Despite its small size and the mixture with other minerals it is undoubtedly identified by X-Ray Diffraction, Fourier Transform Infrared Spectroscopy, Scanning Electron Microscopy and Transmission Electron Microscopy. For the first time, the structural characterisation of a synthetic chukanovite is carried out thanks to the combination of Automated Diffraction Tomography and Precession Electron Diffraction. Refinement results and comparison with literature data show that the structure…

DiffractionMaterials scienceAutomated Diffraction Tomography; Chukanovite; Electron diffraction; Iron hydroxide carbonate; Iron-clay interaction; Nuclear waste storageScanning electron microscopeAnalytical chemistry[SDU.STU.PE]Sciences of the Universe [physics]/Earth Sciences/Petrography[SDU.STU]Sciences of the Universe [physics]/Earth Sciences02 engineering and technology010502 geochemistry & geophysics01 natural sciencesAtomic unitsMicrometreDiffraction tomographyElectron diffractionGeochemistry and Petrology[SDU.STU.GC]Sciences of the Universe [physics]/Earth Sciences/GeochemistryPrecession electron diffractionFourier transform infrared spectroscopy[SDU.STU.AG]Sciences of the Universe [physics]/Earth Sciences/Applied geologyNuclear waste storageComputingMilieux_MISCELLANEOUS0105 earth and related environmental sciencesAutomated Diffraction Tomography021001 nanoscience & nanotechnologyIron hydroxide carbonateCrystallographyChukanoviteTransmission electron microscopy0210 nano-technologyIron-clay interaction[SDU.STU.MI]Sciences of the Universe [physics]/Earth Sciences/Mineralogy
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3D Electron Diffraction: The Nanocrystallography Revolution

2019

Crystallography of nanocrystalline materials has witnessed a true revolution in the past 10 years, thanks to the introduction of protocols for 3D acquisition and analysis of electron diffraction data. This method provides single-crystal data of structure solution and refinement quality, allowing the atomic structure determination of those materials that remained hitherto unknown because of their limited crystallinity. Several experimental protocols exist, which share the common idea of sampling a sequence of diffraction patterns while the crystal is tilted around a noncrystallographic axis, namely, the goniometer axis of the transmission electron microscope sample stage. This Outlook review…

DiffractionMaterials scienceCryo-electron microscopyPhysical and chemical processesGeneral Chemical Engineering010402 general chemistry01 natural sciencesCrystalsCrystalOpticsQD1-999Structure determinationMaterials010405 organic chemistrybusiness.industryCrystal structureGeneral ChemistryNanocrystalline material0104 chemical sciencesChemistryElectron diffractionTransmission electron microscopyGoniometer[PHYS.COND.CM-MS]Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]businessProtein crystallizationOutlook
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High resolution x-ray investigation of periodically poled lithium tantalate crystals with short periodicity

2009

Domain engineering technology in lithium tantalate is a well studied approach for nonlinear optical applications. However, for several cases of interest, the realization of short period structures (< 2 ��m) is required, which make their characterization difficult with standard techniques. In this work, we show that high resolution x-ray diffraction is a convenient approach for the characterization of such structures, allowing us to obtain in a nondestructive fashion information such as the average domain period, the domain wall inclination, and the overall structure quality.

DiffractionMaterials scienceFerroelectric materialFOS: Physical sciencesGeneral Physics and AstronomyDielectric polarisationElectric domain wallDomain (software engineering)chemistry.chemical_compoundQuality (physics)OpticsLanthanum compoundCondensed Matter - Materials Sciencebusiness.industryMaterials Science (cond-mat.mtrl-sci)Polarization and depolarization.Characterization (materials science)X-ray diffractionDomain wall (magnetism)chemistryLithium tantalateHysteresiDomain engineeringDomain structurebusinessRealization (systems)Optics (physics.optics)Physics - Optics
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Energy dispersive X-ray diffraction potentiality in the field of cultural heritage: simultaneous structural and elemental analysis of various artefac…

2007

The applicability of an Energy Dispersive X-ray Diffractometer to some technical questions in the field of Cultural Heritage is presented. This diffractometer, equipped with a white source, has been utilized for the structural and elemental analysis of some items having different nature. Given its design, the instrument allows to collect data from samples as big as a book or a little more. Samples, without collection of any portion and without any preliminary preparation, have been placed in the instrument and spectra have been collected in a wide energy range that contains X-ray fluorescence and diffraction features. In all cases, data acquired in air and in a non destructive way were reli…

DiffractionMaterials scienceField (physics)business.industryAnalytical chemistrycultural heritageAnalytical ChemistryCultural heritageOpticsSpectrometry FluorescenceX-Ray DiffractionElemental analysiscultural heritage; edxdNon destructiveedxdMicroscopy Electron ScanningEnergy-dispersive X-ray diffractionEDXD Cultural HeritagebusinessArtGeneral Environmental ScienceDiffractometerAnnali di chimica
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Crystal structure of disordered nanocrystalline $\alpha^{II}$-quinacridone determined by electron diffraction

2016

CrystEngComm 18(4), 529 - 535(2016). doi:10.1039/C5CE01855B

DiffractionMaterials scienceGas electron diffractionStacking02 engineering and technologyGeneral ChemistryCrystal structure010402 general chemistry021001 nanoscience & nanotechnologyCondensed Matter Physics54001 natural sciencesNanocrystalline material0104 chemical scienceschemistry.chemical_compoundCrystallographychemistryElectron diffractionQuinacridoneddc:540General Materials Science0210 nano-technologyElectron backscatter diffraction
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Uniaxial Alignment of Polycyclic Aromatic Hydrocarbons by Solution Processing

2005

The self-organization of two polycyclic aromatic hydrocarbons with different aromatic core sizes, dodecylphenyl-substituted hexa-peri- hexabenzocoronene and an extended disk consisting of 96 carbon atoms 6-fold-alkyl-substituted, on the surface from solution has been investigated. Highly ordered surface layers of both materials could be obtained by the zone-casting technique, despite an apparently low self-organization in drop-cast films. The zone-cast films revealed high macroscopic uniaxial orientation of the columns with a molecular edge-on arrangement on the glass support as confirmed by polarized optical microscopy, UV-vis measurements in polarized light, high-resolution transmission e…

DiffractionMaterials scienceGeneral Chemical EngineeringAnalytical chemistrychemistry.chemical_elementGeneral Chemistrylaw.inventionMolecular dynamicschemistryOptical microscopeElectron diffractionTransmission electron microscopylawPhase (matter)Materials ChemistryMoleculeCarbonChemistry of Materials
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Ferroelectric Domain Walls in BaTiO3: Fingerprints in XRPD Diagrams and Quantitative HRTEM Image Analysis

1997

The structure of ferroelectric domain walls in BaTiO3 has been investigated through two complementary approaches, a global one by the fine analysis of X-ray diffraction patterns, the other essentially local via a quantitative image analysis method developed and applied to High Resolution Transmission Electron Microscopy images. These two original approaches converge towards a clear description of 90○ walls which are shown to be a 4–6 nm wide region where the crystallographic discontinuity is accommodated by irregular atomic displacements. The results given here demonstrate that the usual structural theoretical description of walls commonly accepted for energy calculations are far too simpli…

DiffractionMaterials scienceGeneral EngineeringGeneral Physics and AstronomyMineralogy02 engineering and technology021001 nanoscience & nanotechnology01 natural sciencesFerroelectricityComputational physicsDiscontinuity (geotechnical engineering)[PHYS.HIST]Physics [physics]/Physics archives0103 physical sciences010306 general physics0210 nano-technologyHigh-resolution transmission electron microscopyPowder diffractionAnalysis methodJournal de Physique III
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GdBO3 and YBO3 crystals under compression

2021

High-pressure X-ray diffraction studies on nanocrystals of the GdBO3 and YBO3 rare-earth orthoborates are herein reported up to 17.4(2) and 13.4(2) GPa respectively. The subsequent determination of the room-temperature pressure-volume equations of state is presented and discussed in the context of contemporary publications which contradict the findings of this work. In particular, the isothermal bulk moduli of GdBO3 and YBO3 are found to be 170(13) and 163(13) GPa respectively, almost 50% smaller than recent findings. Our experimental results provide an accurate revision of the high-pressure compressibility behaviour of GdBO3 and YBO3 which is consistent with the known systematics in isomor…

DiffractionMaterials scienceHigh-pressureThermodynamicsContext (language use)02 engineering and technologyInelastic light scattering010402 general chemistry01 natural sciencesIsothermal processModuliAb initio quantum chemistry methodsMaterials ChemistryBulk modulusBulk modulusSynchrotron radiationMechanical EngineeringMetals and Alloys021001 nanoscience & nanotechnologyX-ray diffractionPhosphors0104 chemical sciencesMechanics of MaterialsFISICA APLICADAX-ray crystallographyCompressibility0210 nano-technologyJournal of Alloys and Compounds
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Facile Large Scale Synthesis of WS2 Nanotubes from WO3 Nanorods Prepared by a Hydrothermal Route.

2005

Abstract Hexagonal WO 3 nanorods of 5–50 nm in diameter and 150–250 nm in length have been synthesised in gram quantities by a low temperature hydrothermal route using citric acid as a structural modifier and hexadecylamine as a templating agent. The ratio of [A]/[W] play an important role on WO 3 nanorods formation. These WO 3 nanorods were found highly suitable as a precursor for the synthesis of a good yield of multiwalled WS 2 nanotubes by reducing them with H 2 S at 840 °C for 30 min. The length and the wall thickness of the WS 2 nanotubes could be altered by controlled reduction of the oxide precursor. The morphology, structure and the composition of the WO 3 nanorods and WS 2 nanotub…

DiffractionMaterials scienceMorphology (linguistics)ChemistryOxideNanotechnologyGeneral ChemistryGeneral MedicineCondensed Matter PhysicsMicrostructureHydrothermal circulationchemistry.chemical_compoundChemical engineeringTransmission electron microscopyYield (chemistry)General Materials ScienceNanorodSelected area diffractionHigh-resolution transmission electron microscopyChemInform
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