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ChemPhysChem, ISSN 1439-4235, 10/2017, Volume 18, Issue 19, pp. 2666 - 2674
Highly reactive and nanosized Th1‐xYxO2‐x/2 or Ce0.8Ln0.2O1.9 mixed oxides were prepared through the initial precipitation of hydroxide precursors which were... 
Oxide | Ceramic electrolyte | Cerium | Sintering | Thorium | MIXED-OXIDES | SOLID-SOLUTIONS | ELECTRICAL-PROPERTIES | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | CHEMISTRY, PHYSICAL | YTTRIA-DOPED THORIA | THO2 | TEMPERATURE | OXYGEN SENSORS | CERIA | LIQUID-SODIUM | MICROSTRUCTURE | Oxides | Electrolytes | Ceramics | Ceramic materials | Material chemistry | Chemical Sciences | Radiochemistry
Journal Article
European Journal of Inorganic Chemistry, ISSN 1434-1948, 02/2019, Volume 2019, Issue 7, pp. 1039 - 1045
THe methanation of carbon dioxide was studied over bimetallic nickel‐5f block element oxides, 2NiO·ThO2 and 2NiO·UO3. The catalysts were prepared by two... 
Bimetallic oxides | Methanation | Stability | 5f block elements | Carbon dioxide | METHANOL | UNI2 | CATALYTIC-HYDROGENATION | COPPER | ADSORPTION | LOW-TEMPERATURE | CHEMISTRY, INORGANIC & NUCLEAR | NITROUS-OXIDE | NICKEL | PARTIAL OXIDATION | CARBON-DIOXIDE | Intermetallic compounds | Oxides | Bimetals | Uranium | Catalysts | Sol-gel processes | Oxidation | Thorium oxides | Nickel | Catalysis | Thorium | Aluminum oxide
Journal Article
Journal of Thermal Analysis and Calorimetry, ISSN 1388-6150, 6/2019, Volume 136, Issue 6, pp. 2421 - 2427
Thorium–cerium mixed oxides (Th1−xCex)O2 (x = 0.25, 0.5, 0.75) were prepared by the citrate gel combustion technique. X-ray diffraction investigations of these... 
Polymer Sciences | Chemistry | Analytical Chemistry | Measurement Science and Instrumentation | Thermodynamic functions | Solid solutions | Physical Chemistry | DSC | Drop calorimetry | (Th,Ce)O 2 | Heat capacity | Inorganic Chemistry | (Th,Ce)O | CHEMISTRY, ANALYTICAL | THERMAL-EXPANSION | CHEMISTRY, PHYSICAL | BULK | THO2 | THERMODYNAMICS | Th | Ce)O-2
Journal Article
Journal of the American Ceramic Society, ISSN 0002-7820, 03/2018, Volume 101, Issue 3, pp. 1004 - 1008
A facile method to synthesize silicon oxide clad uranium oxide nanowires is presented. U3Si2, used as a precursor, was oxidized to produce uranium oxide... 
hydrothermal | nanomaterials | oxides | uranium/uranium compounds | nanowires | THORIUM | GROWTH | NANOCRYSTALS | uranium compounds | uranium | PELLETS | MATERIALS SCIENCE, CERAMICS | Silicon | Uranium | Silicon oxides | Uranium silicide | Amorphous silicon | Product design | Plutonium | Nanowires | Uranium dioxide | NANOSCIENCE AND NANOTECHNOLOGY | MATERIALS SCIENCE
Journal Article
Journal of Nuclear Materials, ISSN 0022-3115, 03/2018, Volume 500, pp. 381 - 388
Thorium-uranium oxide pellets with high densities were prepared at the Canadian Nuclear Laboratories (CNL) by co-milling, pressing, and sintering at 2023 K,... 
Thermal diffusivity | Thermal conductivity | Thorium-uranium mixed oxide fuel | Laser flash technique | NUCLEAR | MATERIALS SCIENCE, MULTIDISCIPLINARY | SOLID-SOLUTIONS | DIOXIDE | THO2 | TEMPERATURE | NUCLEAR SCIENCE & TECHNOLOGY | UO2 | FABRICATION | (TH,U)O-2 | UO2-THO2 SYSTEM | FUELS | Thermal properties | Uranium | Sintering | Analysis | Oxides | Metal powders | Metal powder products | Electric properties
Journal Article
Journal of Molecular Liquids, ISSN 0167-7322, 01/2016, Volume 213, pp. 58 - 68
The high surface area, the pH-dependent highly negative charge, and the abundant surface functional groups make graphene oxides (GOs) efficient for cation... 
Sorption | Desorption | DLM | Thorium(IV) | Graphene oxides | AQUEOUS-SOLUTIONS | FULVIC-ACID | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | CHEMISTRY, PHYSICAL | MULTIWALLED CARBON NANOTUBES | U(VI) IONS | ACTIVATED CARBON | FOREIGN IONS | NA-MONTMORILLONITE | IONIC-STRENGTH | NATURAL ORGANIC-MATTER | HUMIC-ACID | Oxides | Models | Graphene | Analysis | Investigations | Graphite
Journal Article
JOURNAL OF NUCLEAR MATERIALS, ISSN 0022-3115, 10/2016, Volume 479, pp. 112 - 122
The melting behaviors of pure ThO2, UO2 and PuO2 as well as (Th,U)O-2 and (Th,Pu) O-2 mixed oxides (MOX) have been studied using molecular dynamics (MD)... 
LIQUIDUS TEMPERATURES | MOLECULAR-DYNAMICS | THERMOPHYSICAL PROPERTIES | MATERIALS SCIENCE, MULTIDISCIPLINARY | THERMAL-CONDUCTIVITY | THORIUM-DIOXIDE | URANIUM-DIOXIDE | UO2-PUO2 SYSTEM | NUCLEAR SCIENCE & TECHNOLOGY | MINING & MINERAL PROCESSING | UO2-THO2 SYSTEM | PHASE-DIAGRAM | HEAT-CAPACITY
Journal Article
Journal of the American Ceramic Society, ISSN 0002-7820, 04/2019, Volume 102, Issue 4, pp. 1832 - 1842
To address the existing gap in the literature of upconversion studies involving thoria, samples of thoria doped with Ho3+‐Yb3+, Er3+‐Yb3+, and Tm3+‐Yb3+ were... 
Oxides | Fluorine compounds | Raman spectroscopy | Optical properties | Analysis | Raman spectra | Upconversion | Fluorite | Emission analysis | X-ray diffraction | Molten salt electrolytes | Thulium | Diffraction patterns | Electrolytic cells | Emission spectra | Lanthanides | Holmium | Fuel cells | Ytterbium | Solid electrolytes | Thorium dioxide | Xerogels | Erbium
Journal Article
Journal of Nuclear Materials, ISSN 0022-3115, 03/2018, Volume 500, p. 381
Thorium-uranium oxide pellets with high densities were prepared at the Canadian Nuclear Laboratories (CNL) by co-milling, pressing, and sintering at 2023 K,... 
Transparency | Atomic properties | Thermal diffusivity | Oxides | Lymphocytes T | Thorium oxides | Mixed oxides | Heat conductivity | Diffusivity | Studies | Specific heat | Spark plasma sintering | Uranium | Nuclear fuels | Infrared lasers | Plasma sintering | Thermal conductivity | Lattice strain | Nuclear reactors | Uranium oxide | Uranium dioxide | Heat transfer | Thorium | Pellets
Journal Article
Journal of Nuclear Materials, ISSN 0022-3115, 01/2018, Volume 498, p. 221
Angle dispersive x-ray diffraction measurements on thorium-praseodymium mixed oxides, (Th1-yPry)O2-x [y = 0, 0.15, 0.4 and 1], have been carried out up to a... 
Transformation | Compression | Fluorite | Structural stability | Data compression | X-ray diffraction | Oxides | Lymphocytes T | Thorium oxides | Mixed oxides | Crystallinity | Phase transitions | Pressure | High pressure | Studies | Diffraction | Nanocrystals | Equations of state | Ambient temperature | Bulk modulus | Thorium | Praseodymium | Crystal structure | Phase transition
Journal Article
Inorganic Chemistry, ISSN 0020-1669, 04/2012, Volume 51, Issue 7, pp. 4239 - 4249
Four Th­(IV) hydroxide/oxide clusters have been synthesized from aqueous solution. The structures of [Th8(μ3-O)4(μ2-OH)8(H2O)15(SeO4)8·7.5H2O] (1),... 
THORIUM | PLUTONIUM | CRYSTAL-STRUCTURE | HYDROLYSIS | CHEMISTRY | VALUES | FREE-ENERGY | SOLUBILITY | FRAMEWORKS | WATER | CHEMISTRY, INORGANIC & NUCLEAR | Measurement | Thermal properties | Usage | Frequency modulation | Optical properties | Analysis | Crystals | Density functionals | Raman spectroscopy | Structure | Thorium
Journal Article
Journal of Nuclear Materials, ISSN 0022-3115, 01/2018, Volume 498, pp. 221 - 226
Angle dispersive x-ray diffraction measurements on thorium-praseodymium mixed oxides, (Th Pr )O [  = 0, 0.15, 0.4 and 1], have been carried out up to a... 
X-ray diffraction | Mixed oxides | High pressure | Phase transition | PRO2 | MATERIALS SCIENCE, MULTIDISCIPLINARY | SIZE | DIOXIDES | THO2 | NANOPARTICLES | FLUORITE STRUCTURE | NUCLEAR SCIENCE & TECHNOLOGY | BULK MODULUS | CEO2 | PHASE-STABILITY | 35 GPA
Journal Article