Search results for "chemical vapor deposition"

showing 10 items of 199 documents

A supercritical-fluid method for growing carbon nanotubes

2007

Large‐scale generation of multiwalled carbon nanotubes (MCNTs) is efficiently achieved through a supercritical fluid technique employing carbon dioxide as the carbon source. Nanotubes with diameters ranging from 10 to 20 nm and lengths of several tens of micrometers are synthesized (see figure). The supercritical‐fluid‐grown nanotubes also exhibit field‐emission characteristics similar to MCNTs grown by chemical‐vapor deposition.

Supercritical fluidsMaterials scienceCarbon nanofiberMechanical EngineeringCarbon nanotubesCarbon nanotubeChemical vapor depositionCondensed Matter::Mesoscopic Systems and Quantum Hall EffectSupercritical fluidlaw.inventionCarbon nanotubes multiwalledCondensed Matter::Materials ScienceNanofluidIndustrial technologyChemical engineeringMechanics of MaterialslawFrit compressionChemical vapor depositionGeneral Materials ScienceCarbon nanotube supported catalyst
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Morphology transitions in ZnO nanorods grown by MOCVD

2012

Morphology transitions (nanorods–nanowalls and nanorods–nanotubes-layer) were induced in the growth of ZnO nanostructures by metal organic chemical vapor deposition (MOCVD) on c-sapphire, using helium as carrier gas, and dimethylzinc–triethylamine and nitrous oxide as zinc and oxygen sources, respectively. A systematic study of the influence of the VI/II ratio and precursor flow-rates on the morphology of ZnO nanorod arrays has been carried out, taking advantage of the ability of MOCVD to individually control the precursor partial pressures. Growth mechanisms are discussed to understand the evolution of the nanostructures morphology for different growth conditions. In particular, the influe…

SupersaturationNanostructureMaterials scienceMorphology (linguistics)chemistry.chemical_elementNanotechnologyChemical vapor depositionPartial pressureZincCondensed Matter PhysicsInorganic ChemistryChemical engineeringchemistryMaterials ChemistryNanorodMetalorganic vapour phase epitaxyJournal of Crystal Growth
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Diffusion-Driven Formation of MoS2 Nanotube Bundles Containing MoS2 Nanopods

2011

MoS2 nanotube bundles, along with embedded nested fullerenes, were formed in a gas-phase reaction of molybdenum carbonyl and H2S gas with the assistance of I2. The amorphous Mo-S-I precursor particles obtained by quenching a modified metal organic chemical vapor deposition (MOCVD) reaction in a large temperature gradient were annealed at elevated temperature in an inert atmosphere. Under the influence of the iodine, the amorphous precursor formed a surface film with an enhanced mobility of the molybdenum and sulfur components. Point defects within the MoS2 layers, combined with the enhanced surface diffusion, lead to a scrolling of the inherently unstable MoS2 lamellae. The role of the reac…

Surface diffusionNanotubeMaterials scienceFullereneAnnealing (metallurgy)General Chemical Engineeringchemistry.chemical_elementGeneral ChemistryChemical vapor depositionAmorphous solidChemical engineeringchemistryTransmission electron microscopyMolybdenumMaterials ChemistryOrganic chemistryChemistry of Materials
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Optimisation of Thermochromic Thin Films on Glass; Design of Intelligent Windows

2010

Theoretically thermochromic glazing has the potential to reduce energy consumption in buildings by allowing visible light for day lighting, reducing unwanted solar gain during the cooling season, while allowing useful solar gain in the heating season. In this study building simulation is used to predict the savings made by novel thermochromic glazing coatings compared to standard products, for locations with different climates. The results suggest that thermochromic glazing can have a significant energy saving effect compared to current approaches.

ThermochromismMaterials sciencebusiness.industryHeating seasonEnergy Simulation Thermochromic Glazing Chemical Vapor Deposition.Settore ICAR/10 - Architettura TecnicaEnergy consumptionBuilding simulationEngineering physicsGlazingOpticsSolar gainThin filmEnergy simulationbusiness
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Low-pressure-MOCVD LaMnO3±δ very thin films on YSZ (100) optimized for studies of the triple phase boundary

2000

Abstract This paper deals with the preparation of LaMnO 3± δ (LM) layers by low pressure-metal organic chemical vapor deposition (LP-MOCVD) using La(tmhd) 3 and Mn(acac) 3 as organometallic precursors. By thermogravimetric analysis, these precursors were found to be suitable for LP-MOCVD in a well-defined range of total pressure and temperature of sublimation. The activation energies of the sublimation process were found to be independent of the pressure within the appropriate range (0.06–3 kPa) and their values were 177 and 100.5 kJ mol −1 for La(tmhd) 3 and Mn(acac) 3 , respectively. LM layers of various thickness ranging between a few and a few hundred nanometers with a controlled La/Mn …

Thermogravimetric analysisChemistryAnalytical chemistryMineralogyGeneral ChemistryChemical vapor depositionCondensed Matter PhysicsEnthalpy of sublimationGeneral Materials ScienceSublimation (phase transition)Metalorganic vapour phase epitaxyThin filmTotal pressureTriple phase boundarySolid State Ionics
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Research data supporting "Antiferromagnetism and p-type conductivity of non-stoichiometric nickel oxide thin films"

2019

Raw data for the manuscript. The dataset contains the files used for the figures and tables in the Article and its Supporting Information. See the Readme file for a detailed description of the dataset.

Thin FilmsNickel OxideChemical Vapor DepositionAtomic Layer DepositionData_FILESSolution Deposition
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The functionalization of nanodiamonds (diamondoids) as a key parameter of their easily controlled self-assembly in micro- and nanocrystals from the v…

2014

We detail herein readily accessible processes to control previously unobserved robust self-assemblies of nanodiamonds (diamondoids) in micro- and nanocrystals from their mild vapor deposition. The chemical functionalization of uniform and discernible nanodiamonds was found to be a key parameter, and depending on the type of functional group (hydroxy, fluorine, etc.) and its position on the diamondoid, the structure of the discrete deposits can vary dramatically. Thus, well-defined anisotropic structures such as rod, needle, triangle or truncated octahedron shapes can be obtained, and self-assembled edifices of sizes ranging from 20 nm to several hundred micrometers formed with conservation …

Truncated octahedronMaterials scienceNanocrystalSurface modificationGeneral Materials ScienceSublimation (phase transition)NanotechnologySelf-assemblyChemical vapor depositionNanodiamondDiamondoidNanoscale
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A tungsten oxide–lutetium bisphthalocyanine n–p–n heterojunction: from nanomaterials to a new transducer for chemo-sensing

2019

We report on a new hybrid heterojunction gas-sensitive device by combining a molecular material with a metal oxide. WO3 was synthesised via an aerosol-assisted chemical vapour deposition technique from a tungsten hexacarbonyl precursor. Onto an inorganic film, LuPc2 was vacuum evaporated. The morphology of the WO3–LuPc2 hybrid films is dominated by the morphological features of the tungsten oxide film, as shown by scanning electron microscopy and atomic force microscopy. Raman spectroscopy of the device confirms the presence of both materials. The non-linear I–V characteristics demonstrate the existence of an energy barrier at the interface between the inorganic and molecular materials. The…

Tungsten hexacarbonylMaterials scienceScanning electron microscopeOxideAnalytical chemistryHeterojunction02 engineering and technologyGeneral ChemistryChemical vapor deposition010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesNanomaterialsDielectric spectroscopychemistry.chemical_compoundsymbols.namesakechemistryMaterials Chemistrysymbols0210 nano-technologyRaman spectroscopyJournal of Materials Chemistry C
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On erbium lattice location in ion implanted Si0.75Ge0.25 alloy

2003

A high crystalline quality Si0.75Ge0.25 alloy layer grown by chemical vapor deposition was implanted with 70 keV Er+ ions to a fluence of 1015 cm−2 at temperature of 550 °C. The implantation was found to result in an Er depth distribution with 1 at. % maximum concentration 30 nm beneath the surface. The location of the erbium atoms in the host matrix lattice is derived through computer simulation of experimental axial channeling angular scans measured by in situ Rutherford backscattering/channeling spectrometry. Using computer code FLUX 7.7 it is shown that 60% of the implanted erbium atoms are located at ytterbium sites, 10% at tetrahedral sites, and the remainder are associated with rando…

YtterbiumMaterials scienceSiliconAnalytical chemistryGeneral Physics and Astronomychemistry.chemical_elementChemical vapor depositionChannellingFluenceIonErbiumIon implantationchemistrySILICONJournal of Applied Physics
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MOCVD deposition of YSZ on stainless steels

2003

Abstract Yttria stabilized zirconia was deposited on stainless steel using the metal–organic chemical vapor deposition (MOCVD) technique, from β-diketonate precursors. The variation of the evaporation temperatures of yttrium and zirconium precursor allowed to control the level of Y within the film. Over the temperature range 125–150 °C, the Y content increased from 2.5 to 17.6 at.%. X-ray diffraction (XRD) analyses evidenced tetragonal phase of zirconia when the Y content was below 8 at.%, and cubic phase for higher concentration. Sputtered neutral mass spectrometry (SNMS) profiles confirmed that the control and stability of Y precursor temperature were of major importance to guarantee the …

ZirconiumMaterials scienceMetallurgyAnalytical chemistryGeneral Physics and Astronomychemistry.chemical_elementSurfaces and InterfacesGeneral ChemistryChemical vapor depositionYttriumAtmospheric temperature rangeCondensed Matter PhysicsSurfaces Coatings and FilmsTetragonal crystal systemchemistryCubic zirconiaMetalorganic vapour phase epitaxyYttria-stabilized zirconiaApplied Surface Science
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