Search results for "Trioxide"

showing 6 items of 96 documents

Oxidation of alcohols to carbonyl compounds with CrO3.SiO2 in supercritical carbon dioxide.

2006

Supercritical carbon dioxide (scCO2) is an effective reaction medium to perform the oxidation of primary and secondary aliphatic alcohols to the corresponding carbonyl compounds with chromium trioxide supported on silica. These reactions were performed by flowing a solution of the alcohol in scCO2 through a column containing the supported reagent and recovering the product by depressurization. This method avoids the use of organic solvents and the contamination of the products with chromium species.

chemistry.chemical_classificationSupercritical water oxidationChromium trioxidePrimary (chemistry)Supercritical carbon dioxideOrganic ChemistryInorganic chemistrychemistry.chemical_elementAlcoholGeneral Medicinechemistry.chemical_compoundChromiumchemistryAlcohol oxidationReagentOrganic chemistryBridged compoundsThe Journal of organic chemistry
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Propane-1,3-diammonium molybdate

2019

The reaction between equimolar amounts of propane-1,3-diamine and molybdenum trioxide in water led to the formation of single crystals of the title salt, (C3H12N2)[MoO4]. The asymmetric unit is comprised of one propane-1,3-diammonium cation and one molybdate anion. The latter is isolated in the structure and has a slightly distorted tetrahedral configuration. An extensive network of N—H...O hydrogen bonds connects anions and cations, giving rise to a compact three-dimensional packing.

chemistry.chemical_classificationcrystal structure010405 organic chemistryHydrogen bondSalt (chemistry)General MedicineCrystal structureMolybdate010402 general chemistry01 natural sciences0104 chemical sciencesIonMolybdenum trioxidechemistry.chemical_compoundCrystallographychemistryPropanemolybdate saltpropane-13-diammoniumhydrogen bondslcsh:QD901-999[CHIM.CRIS]Chemical Sciences/Cristallography[CHIM]Chemical Scienceslcsh:CrystallographyComputingMilieux_MISCELLANEOUS
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Properties of Multi Phase Interfaces on the Tungsten Trioxide Particles in the Thin Films

2000

A wide spectrum of physical and chemical properties of thin films of tungsten trioxide compounds depend on composition, constitution and structure of the film, interaction with environment, and the type of external influences/excitations. The reason is the non-stoichiometric nature of transition metal oxides and properties of d-electrons. The short range order of non-stoichiometric compounds or phases of WO3 has a strong perovskite arrangement of tungsten and oxygen ions [1, 2]. The smallest crystalline clusters of perovskite short range order consist 6÷9 of [WO6]-octahedrons. One of the structural peculiarities-features of tungsten trioxide, related to non-stoichiometry, is a variety of [W…

chemistry.chemical_compoundChemical speciesMaterials sciencechemistryTransition metalchemistry.chemical_elementPhysical chemistryTungstenThin filmTungsten trioxideAtomic unitsStoichiometryIon
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IR Spectroscopy of Monoclinic Tungsten Oxide

2000

Stoichiometric tungsten trioxide WO3 has several polimorphous crystal phases [1] in the temperature region from 4 up to 1200K. These WO3 phases have more or less distorted ReO3 — type crystal structures, and ReO3 lattice topology is identical to topology of the BO3 sublattice of perovskite ABO3.

chemistry.chemical_compoundCrystallographyMaterials sciencechemistryLattice (order)Tungsten oxideInfrared spectroscopyCrystal structureTungsten trioxideStoichiometryMonoclinic crystal system
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Wo3 and ionic liquids: A synergic pair for pollutant gas sensing and desulfurization

2020

This review deals with the notable results obtained by the synergy between ionic liquids (ILs) and WO3 in the field of pollutant gas sensing and sulfur removal pretreatment of fuels. Starting from the known characteristics of tungsten trioxide as catalytic material, many authors have proposed the use of ionic liquids in order to both direct WO3 production towards controllable nanostructures (nanorods, nanospheres, etc.) and to modify the metal oxide structure (incorporating ILs) in order to increase the gas adsorption ability and, thus, the catalytic efficiency. Moreover, ionic liquids are able to highly disperse WO3 in composites, thus enhancing the contact surface and the catalytic abilit…

lcsh:TN1-997Pollutant gasesMaterials scienceOxidechemistry.chemical_element02 engineering and technology010402 general chemistry01 natural sciencesCatalysischemistry.chemical_compoundAdsorptionWO<sub>3</sub>WO3General Materials ScienceDesulfurizationlcsh:Mining engineering. Metallurgyionic liquidDesulfurization; Gas sensor; Ionic liquids; Pollutant gases; WO; 3pollutant gaseMetals and AlloysSettore CHIM/06 - Chimica Organica021001 nanoscience & nanotechnologySulfurTungsten trioxide0104 chemical sciencesFlue-gas desulfurizationIonic liquidschemistryChemical engineeringIonic liquid0210 nano-technologyGas sensorHydrodesulfurization
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Characterization of rhenium oxide films and their application to liquid crystal cells

2009

Rhenium trioxide exhibits high electronic conductivity, while its open cubic crystal structure allows an appreciable hydrogen intercalation, generating disordered solid phases, with protonic conductivity. Rhenium oxide thin films have been obtained by thermal evaporation of ReO3 powders on different substrates, maintained at different temperatures, and also by reactive magnetron sputtering of a Re metallic target. A comparative investigation has been carried out on these films, by using micro-Raman spectroscopy and x-ray diffraction. Two basic types of solid phases appear to grow in the films: a red metallic HxReO3 compound, with distorted perovskite structures, like in the bulk material, a…

structural and vibrational characterizationMaterials sciencePerrhenateInorganic chemistryGeneral Physics and Astronomychemistry.chemical_elementCrystal structureSputter depositionRheniumIndium tin oxidechemistry.chemical_compoundRhenium trioxidechemistryChemical engineeringLiquid crystalRhenium oxide filmsRhenium oxide films; structural and vibrational characterization; electro-optic response.electro-optic responsePerovskite (structure)Journal of Applied Physics
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