Nucleation and Growth

PREPARATION, STRUCTURAL CHARACTERIZATION, AND PROPERTIES OF NIOBIUM PENTAARYLOXIDES, Nb(OAr)5

Engineering / Environmental Engineering / Materials Engineering / Chemical Engineering / Condensed Matter Physics / Inorganic Chemistry / Organic Chemistry / Technology / Magnetic Recording / Coordination Chemistry / Applied Physics / Scanning Electron Microscopy / Transmission Electron Microscopy / Photocatalysis / Mathematical Sciences / Porous Media / Metal Complexes / Silica / Physical sciences / Titanium dioxide / Organometallics / Magnetic Properties / Pore Size / Activation Energy / Nitrogen / Nucleation and Growth / Domain wall / Specific surface area / Energy Dispersive X-Ray Analysis / CHEMICAL SCIENCES / Ferromagnetic Resonance / Transition metal chemistry / X ray diffraction / Thermogravimetric Analysis / Infrared spectra / UV irradiation / Mesoporous / Structural Properties / Amino Acid Profile / Metal ion / Thin film deposition / High Density Concrete / THEORETICAL AND COMPUTATIONAL CHEMISTRY / Trichloroethylene / Batch Reactor / Biological activity / Film Thickness / Sol gel / Kinetic Parameter / L / Spin Wave / Molecular Structure / Nanoscience and nanotechnology / Power Sources / Dynamic Properties / Domain Structure / Inorganic Chemistry / Organic Chemistry / Technology / Magnetic Recording / Coordination Chemistry / Applied Physics / Scanning Electron Microscopy / Transmission Electron Microscopy / Photocatalysis / Mathematical Sciences / Porous Media / Metal Complexes / Silica / Physical sciences / Titanium dioxide / Organometallics / Magnetic Properties / Pore Size / Activation Energy / Nitrogen / Nucleation and Growth / Domain wall / Specific surface area / Energy Dispersive X-Ray Analysis / CHEMICAL SCIENCES / Ferromagnetic Resonance / Transition metal chemistry / X ray diffraction / Thermogravimetric Analysis / Infrared spectra / UV irradiation / Mesoporous / Structural Properties / Amino Acid Profile / Metal ion / Thin film deposition / High Density Concrete / THEORETICAL AND COMPUTATIONAL CHEMISTRY / Trichloroethylene / Batch Reactor / Biological activity / Film Thickness / Sol gel / Kinetic Parameter / L / Spin Wave / Molecular Structure / Nanoscience and nanotechnology / Power Sources / Dynamic Properties / Domain Structure

Interfacial glass transition profiles in ultrathin, spin cast polymer films

Engineering / Chemical Physics / Atomic Force Microscopy / Physical sciences / Nucleation and Growth / Scanning Force Microscopy / CHEMICAL SCIENCES / Glass Transition / Glass Transition Temperature / Thermal Stability / Length scale / Molecular weight / Thermal Activation / Film Thickness / Thermal Effects / Scanning Force Microscopy / CHEMICAL SCIENCES / Glass Transition / Glass Transition Temperature / Thermal Stability / Length scale / Molecular weight / Thermal Activation / Film Thickness / Thermal Effects

Brittle-Quasibrittle Transition in Dynamic Fracture: An Energetic Signature

Physical sciences / Nucleation and Growth / IT Value / Crack Initiation / Fracture Mechanic / Dynamic Fracture / Fracture Energy / Dynamic Fracture / Fracture Energy

Carbon dioxide sequestration by mineral carbonation

Carbon Dioxide / Trace Metals / Energy Consumption / Soil Chemistry / Sensitivity Analysis / Technology development / Cost Estimation / Global Warming / Sociologie / Magnesium / Energy demand / Process Improvement / Fossil Fuels / Reaction Time / Nucleation and Growth / Electricity Consumption / Soil Quality / Surface Area / Particle Size / Cost Reduction / Calcium Carbonate / Trace element / Thermal Activation / Reaction Rate / Reaction Mechanism / Thermodynamic Stability / Elevated Temperature / Atmospheric Carbon Dioxide / Carbon Steel / CO 2 Emission / Technology development / Cost Estimation / Global Warming / Sociologie / Magnesium / Energy demand / Process Improvement / Fossil Fuels / Reaction Time / Nucleation and Growth / Electricity Consumption / Soil Quality / Surface Area / Particle Size / Cost Reduction / Calcium Carbonate / Trace element / Thermal Activation / Reaction Rate / Reaction Mechanism / Thermodynamic Stability / Elevated Temperature / Atmospheric Carbon Dioxide / Carbon Steel / CO 2 Emission

Comparison of Johnson-Mehl-Avrami-Kologoromov kinetics with a phase-field model for microstructural evolution driven by substructure energy

Kinetics / Kinetic Theory / Phase Field / Physical sciences / Nucleation and Growth / CHEMICAL SCIENCES / Microstructures / Volume Fraction / Microstructure evolution / CHEMICAL SCIENCES / Microstructures / Volume Fraction / Microstructure evolution

Iron–iron oxide core–shell nanoparticles synthesized by laser pyrolysis followed by superficial oxidation

Raman Spectroscopy / Carbon Nanotube / Multidisciplinary / Iron Oxide / Iron / Nucleation and Growth / Energy Transfer / Nucleation and Growth / Energy Transfer
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