We have studied the structures of zirconia nanoparticles formed by plasma-spraying an organo-metallic precursor. Inspection of the particles in the TEM reveals that they adopt one of two distinct crystal structures, depending upon their size. The smallest particles have the tetragonal structure, while larger ones are monoclinic. Interpolation of the data reveals a critical size above which the monoclinic structure is stable. Upon annealing, the zirconia particles coarsen and undergo a phase transformation when the particle size is of the order of 18 nm, for reasons associated with the surface energy, and the occurrence of this phase transformation produces a sudden change in the driving force for coarsening. Grain size distributions below t...
Strong changes in morphology and phase composition of zirconia nanoparticles can be induced by alter...
Nanocrystalline materials (also referred to as nanostructures, nanophase materials, or nanometer-siz...
Difficulties in reproducing the performances of nanoparticles dispersions are obstructive for the p...
Zirconia can be considered to be one of the most important ceramic materials because of its large ra...
Zirconia can be considered to be one of the most important ceramic materials because of its large ra...
Zirconia can be considered to be one of the most important ceramic materials because of its large ra...
Zirconia can be considered to be one of the most important ceramic materials because of its large ra...
Zirconia can be considered to be one of the most important ceramic materials because of its large ra...
Zirconia can be considered to be one of the most important ceramic materials because of its large ra...
Zirconia can be considered to be one of the most important ceramic materials because of its large ra...
The correlation between density and specific surface area of ZrO2 nanoparticles (NPs) was studied. T...
Crystalline phase evolution and morphological changes are strictly correlated phenomena during the g...
Crystalline phase evolution and morphological changes are strictly correlated phenomena during the g...
Crystalline phase evolution and morphological changes are strictly correlated phenomena during the g...
Crystalline phase evolution and morphological changes are strictly correlated phenomena during the g...
Strong changes in morphology and phase composition of zirconia nanoparticles can be induced by alter...
Nanocrystalline materials (also referred to as nanostructures, nanophase materials, or nanometer-siz...
Difficulties in reproducing the performances of nanoparticles dispersions are obstructive for the p...
Zirconia can be considered to be one of the most important ceramic materials because of its large ra...
Zirconia can be considered to be one of the most important ceramic materials because of its large ra...
Zirconia can be considered to be one of the most important ceramic materials because of its large ra...
Zirconia can be considered to be one of the most important ceramic materials because of its large ra...
Zirconia can be considered to be one of the most important ceramic materials because of its large ra...
Zirconia can be considered to be one of the most important ceramic materials because of its large ra...
Zirconia can be considered to be one of the most important ceramic materials because of its large ra...
The correlation between density and specific surface area of ZrO2 nanoparticles (NPs) was studied. T...
Crystalline phase evolution and morphological changes are strictly correlated phenomena during the g...
Crystalline phase evolution and morphological changes are strictly correlated phenomena during the g...
Crystalline phase evolution and morphological changes are strictly correlated phenomena during the g...
Crystalline phase evolution and morphological changes are strictly correlated phenomena during the g...
Strong changes in morphology and phase composition of zirconia nanoparticles can be induced by alter...
Nanocrystalline materials (also referred to as nanostructures, nanophase materials, or nanometer-siz...
Difficulties in reproducing the performances of nanoparticles dispersions are obstructive for the p...