Search results for "visual_art"

showing 10 items of 2987 documents

Differences and Similarities between the Isotypic AntimonidesMFe1−xSb, ScCo1−xSb, andMNiSb (M=Zr, Hf)

1999

The new antimonides MFe{sub 1{minus}x}Sb can be synthesized by arc-melting of M, Fe, and MSb{sub 2} (M = Zr, Hf). All title compounds crystallize in the TiNiSi structure type (space group Pnma, Z = 4). The lattice parameters of the new phases of MFe{sub 1{minus}x}Sb, as obtained from the bulk samples of the nominal compositions MFeSb, are a = 681.4(1) pm, b = 417.87(7) pm, c = 740.3(1) pm for ZrFe{sub 1{minus}x}Sb and a = 674.0(1) pm, b = 412.0(2) pm, c = 729.7(2) pm for HfFe{sub 1{minus}x}Sb. Under the reaction conditions used, the occupancy factors of the iron position content of ZrFe{sub 1{minus}x}Sb does not exceed 68(1)% (i.e., x = 0.32(1)). Extended Hueckel calculations, performed on …

Materials scienceInorganic chemistryIntermetallicAb initioElectronic structureCrystal structureCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsInorganic ChemistryMetalCrystallographyElectron diffractionvisual_artMaterials ChemistryCeramics and Compositesvisual_art.visual_art_mediumPhysical and Theoretical ChemistryElectronic band structureGround stateJournal of Solid State Chemistry
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Structural characterization of mixed Ta–Re oxide films

2006

Thin films of mixed Ta and Re oxides have been produced by reactive dc magnetron co-sputtering of pure Ta and Re metal targets in Ar–O2 atmosphere. The structural evolution of these films has been studied as a function of the composition, starting from a pure tantalum oxide film up to about 82% rhenium content. The composition and the structure of the films have been investigated by using X-ray diffraction and micro-Raman spectroscopy. For low Re content (20%), islands of a well crystallized phase, based on ReO4 groups, appear in the films still composed by pure amorphous tantalum oxide, while a mixed disordered solid phase is found for the highest Re concentration (82%). © 2006 Elsevier B.…

Materials scienceInorganic chemistryOxideAnalytical chemistrychemistry.chemical_elementGeneral ChemistryRheniumCondensed Matter PhysicsAmorphous solidMetalchemistry.chemical_compoundsymbols.namesakechemistryvisual_artPhase (matter)Cavity magnetronvisual_art.visual_art_mediumsymbolsGeneral Materials ScienceThin filmRaman spectroscopySolid State Ionics
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Energy Conversion: Solid Oxide Fuel Cells: First-Principles Modeling of Elementary Processes

2013

Fuel cells are electrochemical devices that directly transform the chemical free energy of combustion (e.g., H2 + O2 and CHx + O2) into electrical energy. The avoidance of a thermal detour guarantees high theoretical efficiency. As far as the temperature regimes are concerned, we distinguish between high temperature ceramic fuel cells, intermediate-temperature fuel cells, and low temperature (i.e., only slightly above room temperature) fuel cells. The high temperature fuel cells are usually based on oxide components (ternary transition metal oxides as cathodes, Ni or Cu cermets as anodes, and acceptor-doped zirconia or ceria as electrolytes). The high temperature necessary for ion conductio…

Materials scienceInorganic chemistryOxideElectrolyteCermetCombustionElectrochemistryAnodechemistry.chemical_compoundchemistryvisual_artvisual_art.visual_art_mediumEnergy transformationCeramic
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Novel metallic iron/manganese-zinc ferrite nanocomposites prepared by microwave hydrothermal flash synthesis

2011

8 Caillot, T. Pourroy, G. Stuerga, D.; Metallic iron (alpha-Fe)/manganese-zinc ferrite (Fe3-x-yMnxZnyO4) nanocomposites have been successfully synthesized for the first time using microwave hydrothermal treatment of alcoholic solutions of chloride precursors and sodium ethoxide. This new type of nanocomposites, never obtained by conventional synthesis, can now be produced in a short period (e.g. 15s). The powders were characterized by X-ray diffraction, transmission electron microscopy and magnetic properties were measured. In most cases, three classes of crystallites were observed; one of them is composed of grains of about 100 nm in size where the metal is inserted into the oxide. For all…

Materials scienceInorganic chemistryOxideNanoparticlechemistry.chemical_element02 engineering and technologyZinc01 natural sciencesHydrothermal circulationMetalchemistry.chemical_compound0103 physical sciencesMaterials ChemistryHydrothermal synthesis010302 applied physicsMechanical EngineeringMetals and Alloys[CHIM.CATA]Chemical Sciences/Catalysis021001 nanoscience & nanotechnology[SDE.ES]Environmental Sciences/Environmental and SocietychemistryMechanics of Materialsvisual_artvisual_art.visual_art_mediumFerrite (magnet)Crystallite0210 nano-technologyNuclear chemistry
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H2-TPR, XPS and TEM Study of the Reduction of Ru and Re promoted Co/γ-Al2O3, Co/TiO2 and Co/SiC Catalysts

2016

<p class="1Body">Effects of Ru and Re promoters on Co-CoO<sub>x </sub>catalysts supported on γ-Al<sub>2</sub>O<sub>3</sub>, TiO<sub>2</sub> and SiC were investigated to improve the understanding of the role of promoters of the active phase of Co-CoO<sub>x</sub>-Ru and Co-CoO<sub>x</sub>-Re. The influence of promoter addition on the composition and activity of the catalysts was characterized by several methods, such as H<sub>2</sub>-TPR, XPS, chemisorption and TEM. Furthermore, the role of support and metal-support interaction was especially studied and different support materials were compared.</p&g…

Materials scienceInorganic chemistryOxidechemistry.chemical_elementTPR010402 general chemistry01 natural sciencesChemical reactionFischer-TropschCatalysisMetalchemistry.chemical_compoundX-ray photoelectron spectroscopyXPSkobolttita116010405 organic chemistrycobalt0104 chemical sciencesRutheniumchemistryChemisorptiontemperature-programmed reductionvisual_artTEMvisual_art.visual_art_mediumCobaltcatalystJournal of Materials Science Research
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Enhanced kinetics of hole transfer and electrocatalysis during photocatalytic oxygen evolution by cocatalyst tuning

2016

Understanding photophysical and electrocatalytic processes during photocatalysis in a powder suspension system is crucial for developing efficient solar energy conversion systems. We report a substantial enhancement by a factor of 3 in photocatalytic efficiency for the oxygen evolution reaction (OER) by adding trace amounts (∼0.05 wt %) of noble metals (Rh and Ru) to a 2 wt % cobalt oxide modified Ta3N5 photocatalyst particulate. The optimized system exhibited high quantum efficiencies (QEs) of up to 28 and 8.4% at 500 and 600 nm in 0.1 M Na2S2O8 at pH 14. By isolation of the electrochemical components to generate doped cobalt oxide electrodes, the electrocatalytic activity of cobalt oxide …

Materials scienceInorganic chemistryOxygen evolution02 engineering and technologyGeneral Chemistry[CHIM.CATA]Chemical Sciences/Catalysis010402 general chemistry021001 nanoscience & nanotechnologyElectrochemistryElectrocatalyst01 natural sciences7. Clean energyRedoxCatalysis0104 chemical sciencesCatalysisMetal[CHIM.THEO]Chemical Sciences/Theoretical and/or physical chemistry13. Climate actionvisual_artvisual_art.visual_art_mediumPhotocatalysis0210 nano-technologyCobalt oxideComputingMilieux_MISCELLANEOUS
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Support effect on the structure and CO oxidation activity of Cu-Cr mixed oxides over Al2O3 and SiO2

2009

Abstract Cu-Cr based catalysts supported on silica and alumina with 5 wt% total loading of (CuO + Cr2O3), in different molar ratios, were prepared by wet impregnation. The samples were studied by nitrogen adsorption isotherms (BET), temperature-programmed reduction (TPR), X-ray diffraction (XRD) and X-ray photoelectron spectroscopy (XPS). Their catalytic activity was tested in the CO oxidation reaction. Different structures were obtained in dependence of the support, the atomic ratio and the calcination temperature. In particular, whereas on Al2O3 there was no experimental evidence for interaction between Cu and Cr, over the silica supported systems formation of new phases CuCr2O4 and CuCrO…

Materials scienceInorganic chemistrySinteringchemistry.chemical_elementCondensed Matter PhysicsCopperlaw.inventionCatalysisMetalChromiumchemistryX-ray photoelectron spectroscopylawvisual_artvisual_art.visual_art_mediumGeneral Materials ScienceAtomic ratioCalcinationMaterials Chemistry and Physics
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Novel chemical reaction co-precipitation method for the synthesis of apatite-type lanthanum silicate as an electrolyte in SOFC

2017

Abstract Apatite-type lanthanum silicates have promising performance as electrolyte materials for IT-SOFC. A novel co-precipitation method, based on chemical reaction, is employed in the synthesis process. The reaction products: La(OH) 3 and SiO 2 are used as precursors of apatite synthesis process. The precursors are mixed in molecular scale which provide much conducive to formation reaction. The pure apatite phase composition is obtained with quite moderate temperature of 700 °C for 6 h which shows considerable ionic conductivity performance. The conductivity decreases when you increase the calcination temperature in according with XRD measurement. The XRD measurement shows the presence o…

Materials scienceInorganic chemistrychemistry.chemical_element02 engineering and technologyConductivity010402 general chemistry01 natural sciencesChemical reactionApatitelaw.inventionlawImpurityPhase (matter)Materials ChemistryLanthanumIonic conductivityCalcinationMechanical EngineeringMetals and Alloys021001 nanoscience & nanotechnology0104 chemical scienceschemistryMechanics of Materialsvisual_artvisual_art.visual_art_medium0210 nano-technologyJournal of Alloys and Compounds
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On-surface synthesis on a bulk insulator surface

2018

On-surface synthesis has rapidly emerged as a most promising approach to prepare functional molecular structures directly on a support surface. Compared to solution synthesis, performing chemical reactions on a surface offers several exciting new options: due to the absence of a solvent, reactions can be envisioned that are otherwise not feasible due to the insolubility of the reaction product. Perhaps even more important, the confinement to a two-dimensional surface might enable reaction pathways that are not accessible otherwise. Consequently, on-surface synthesis has attracted great attention in the last decade, with an impressive number of classical reactions transferred to a surface as…

Materials scienceInsulator (electricity)02 engineering and technology010402 general chemistryF160 Organic Chemistry53001 natural sciencesChemical reactionUllmann reactionMetalchemistry.chemical_compoundGeneral Materials ScienceF200 Materials ScienceDiacetylene021001 nanoscience & nanotechnologyCondensed Matter PhysicsCycloaddition0104 chemical sciencesPolymerizationchemistryChemical physicsvisual_artvisual_art.visual_art_mediumF343 Computational PhysicsF320 Chemical PhysicsSupport surface0210 nano-technologyJournal of Physics: Condensed Matter
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Intercalation of two-dimensional oxalate-bridged molecule-based magnets into layered double hydroxide hosts

2010

Here we report the intercalation of a MnII–CrIII oxalate-bridged extended network into the interlamellar space offered by a ZnII–AlIII LDH host. This material exhibits ferrimagnetic ordering below 3 K from dominant antiferromagnetic interactions between metallic centres through the oxalate linker. Our result opens the door for the design of a completely new sort of hybrid magnetic multilayers from molecule-based magnets and layered inorganic flexible hosts, where the intrinsic properties of both sub-layers can be combined.

Materials scienceIntercalation (chemistry)Inorganic chemistryGeneral ChemistryOxalateMetalCrystallographychemistry.chemical_compoundchemistryFerrimagnetismvisual_artMaterials Chemistryvisual_art.visual_art_mediumAntiferromagnetismHydroxideMoleculeMolecule-based magnetsJournal of Materials Chemistry
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