Model systems are needed for surface corrosion studies of spent nuclear oxide fuels. For this purpose ThO2 films have been prepared in situ by adsorption of molecular and atomic oxygen on Th metal films and by sputter deposition of Th metal in an Ar/O2 gas mixture. Surface compositions and electronic structure were compared to the bulk oxide and oxygen substoichiometry effects investigated. X-ray and ultraviolet photoemission spectroscopy (XPS and UPS, respectively) were used to measure to Th- 4f, O-1s core levels and the valence band region. The Th-4f line was analyzed in terms of the final-state screening model. The evolution of the binding energies with oxygen concentration has been studied. On Th metal, adsorption of molecular oxygen ce...
International audienceCorrosion of nuclear fuel (UO2) leads to the formation of higher-order oxides ...
International audienceCorrosion of nuclear fuel (UO2) leads to the formation of higher-order oxides ...
Thin films of transition metal oxides open up a gateway to nanoscale electronic devices beyond silic...
Thin films of U1− xThxO2 (x = 0 to 1) have been deposited via reactive DC sputter technique and char...
AbstractThin films of U1−xThxO2 (x=0 to 1) have been deposited via reactive DC sputter technique and...
Thin films of U1− xThxO2 (x = 0 to 1) have been deposited via reactive DC sputter technique and char...
Quantum mechanical surface energy calculations have been performed on both uranium dioxide (UO{sub 2...
Thin film samples of UO2 and U0.55Th0.45O2 have been prepared by sputter co-deposition under argon a...
AbstractThin films of U1−xThxO2 (x=0 to 1) have been deposited via reactive DC sputter technique and...
Spent nuclear fuel is composed of ≈95% UO2, and upon storage in geologic repository the fuel itse...
Spent nuclear fuel is composed of ≈95% UO2, and upon storage in geologic repository the fuel itse...
In this work, ambient pressure X-ray photoelectron spectroscopy (APXPS) was used to investigate the ...
Thin films of transition metal oxides open up a gateway to nanoscale electronic devices beyond silic...
International audienceUranium dioxide (UO2) is the main component of nuclear fuels. This compound is...
International audienceUranium dioxide (UO2) is the main component of nuclear fuels. This compound is...
International audienceCorrosion of nuclear fuel (UO2) leads to the formation of higher-order oxides ...
International audienceCorrosion of nuclear fuel (UO2) leads to the formation of higher-order oxides ...
Thin films of transition metal oxides open up a gateway to nanoscale electronic devices beyond silic...
Thin films of U1− xThxO2 (x = 0 to 1) have been deposited via reactive DC sputter technique and char...
AbstractThin films of U1−xThxO2 (x=0 to 1) have been deposited via reactive DC sputter technique and...
Thin films of U1− xThxO2 (x = 0 to 1) have been deposited via reactive DC sputter technique and char...
Quantum mechanical surface energy calculations have been performed on both uranium dioxide (UO{sub 2...
Thin film samples of UO2 and U0.55Th0.45O2 have been prepared by sputter co-deposition under argon a...
AbstractThin films of U1−xThxO2 (x=0 to 1) have been deposited via reactive DC sputter technique and...
Spent nuclear fuel is composed of ≈95% UO2, and upon storage in geologic repository the fuel itse...
Spent nuclear fuel is composed of ≈95% UO2, and upon storage in geologic repository the fuel itse...
In this work, ambient pressure X-ray photoelectron spectroscopy (APXPS) was used to investigate the ...
Thin films of transition metal oxides open up a gateway to nanoscale electronic devices beyond silic...
International audienceUranium dioxide (UO2) is the main component of nuclear fuels. This compound is...
International audienceUranium dioxide (UO2) is the main component of nuclear fuels. This compound is...
International audienceCorrosion of nuclear fuel (UO2) leads to the formation of higher-order oxides ...
International audienceCorrosion of nuclear fuel (UO2) leads to the formation of higher-order oxides ...
Thin films of transition metal oxides open up a gateway to nanoscale electronic devices beyond silic...