The behaviour from 1500 K up to melting of nanocrystalline (nc) thorium dioxide, the refractory binary oxide with the highest melting point (3651 K), was explored here for the first time using fast laser heating, multi-wavelength pyrometry and Raman spectroscopy for the analysis of samples quenched to room temperature. Nc-ThO2 was melted at temperatures hundreds of K below the melting temperature assessed for bulk thorium dioxide. A particular behaviour has been observed in the formed liquid and its co-existence with a partially restructured solid, possibly due to the metastable nature of the liquid itself. Raman spectroscopy was used to characterize the thermal-induced structural evolution of nc-ThO2. Assessment of a semi-empirical relatio...
The scientific study described in this thesis aims to achieve understanding of the thermal behavior ...
AbstractThe high-temperature phase diagram of the UO2–ThO2 system has been experimentally revisited ...
The melting behaviour in the pseudo-binary system UO2 – NpO2 has been experimentally assessed for th...
The behaviour from 1500 K up to melting of nanocrystalline (nc) thorium dioxide, the refractory bina...
Pioneering a so far unexplored research field, the behaviour from 1500 K up to melting of nanocrysta...
Thorium dioxide samples have been submitted to homogeneous four-beam laser pulses in an autoclave fi...
The present work is focused on the investigation of possible melting temperature depression of nanoc...
The present work is focused on the investigation of possible melting temperature depression of nano-...
The high-temperature phase diagram of the UO2–ThO2 system has been experimentally revisited in the p...
The high-temperature phase diagram of the UO2-ThO2 system has been experimentally revisited in the p...
The high-temperature phase diagram of the UO2 – ThO2 system has been experimentally revisited in the...
A laser heating approach combined with fast pyrometry in a thermal arrest method was used to provide...
AbstractA laser heating approach combined with fast pyrometry in a thermal arrest method was used to...
The scientific study described in this thesis aims to achieve understanding of the thermal behavior ...
AbstractThe high-temperature phase diagram of the UO2–ThO2 system has been experimentally revisited ...
The melting behaviour in the pseudo-binary system UO2 – NpO2 has been experimentally assessed for th...
The behaviour from 1500 K up to melting of nanocrystalline (nc) thorium dioxide, the refractory bina...
Pioneering a so far unexplored research field, the behaviour from 1500 K up to melting of nanocrysta...
Thorium dioxide samples have been submitted to homogeneous four-beam laser pulses in an autoclave fi...
The present work is focused on the investigation of possible melting temperature depression of nanoc...
The present work is focused on the investigation of possible melting temperature depression of nano-...
The high-temperature phase diagram of the UO2–ThO2 system has been experimentally revisited in the p...
The high-temperature phase diagram of the UO2-ThO2 system has been experimentally revisited in the p...
The high-temperature phase diagram of the UO2 – ThO2 system has been experimentally revisited in the...
A laser heating approach combined with fast pyrometry in a thermal arrest method was used to provide...
AbstractA laser heating approach combined with fast pyrometry in a thermal arrest method was used to...
The scientific study described in this thesis aims to achieve understanding of the thermal behavior ...
AbstractThe high-temperature phase diagram of the UO2–ThO2 system has been experimentally revisited ...
The melting behaviour in the pseudo-binary system UO2 – NpO2 has been experimentally assessed for th...