Nanopowders of pure or very lightly doped zirconia were studied by means of total scattering and pair distribution function analysis, with the aim of understanding how the size of the particles (if a size limit of about 20 nm is not exceeded) tends to stabilise the tetragonal polymorph at room temperature. Total scattering and PDF analyses, together with Rietveld refinements, showed that the tetragonal model is indeed applicable to the average structure of these nanocrystalline zirconia samples, and provided comparable results. However, all the samples, with no influence from the dopant content, showed a similar local distortion for r < 10 \uc5. In this region, the data were fitted with two slightly different tetragonal structures, with a t...
We have studied the structures of zirconia nanoparticles formed by plasma-spraying an organo-metalli...
The atomic-scale structure of three nanocrystalline ZrO2 samples obtained by different techniques an...
International audienceFrom the liquid state to room temperature, two successive solid-state phase tr...
Mechanisms of tetragonal phase stabilisation, at room temperature, in nanocrystalline (\u3c100 nm), ...
Mechanisms of tetragonal phase stabilisation, at room temperature, in nanocrystalline (\u3c100 nm), ...
We synthesize, for the first time, using sol-gel technique and without doping any trivalent impuriti...
We synthesize, for the first time, using sol-gel technique and without doping any trivalent impuriti...
We synthesize, for the first time, using sol-gel technique and without doping any trivalent impuriti...
Zirconia can be considered to be one of the most important ceramic materials because of its large ra...
Synchrotron x-ray absorption spectra of four zirconia polymorphs (monoclinic, orthorhombic, tetragon...
Submicron and nano-sized nanocrystalline pure zirconia (ZrO2) powders having metastable tetragonal a...
The local atomic structures around the Zr atom of pure (undoped) ZrO(2) nanopowders with different a...
Submicron and nano-sized nanocrystalline pure zirconia (ZrO 2) powders having metastable tetragonal ...
Nanocrystalline (15-30 nm) and submicron-sized (500-600 nm) zirconia (ZrO2) particles are synthesize...
Nanocrystalline (15-30 nm) and submicron-sized (500-600 nm) zirconia (ZrO2) particles are synthesize...
We have studied the structures of zirconia nanoparticles formed by plasma-spraying an organo-metalli...
The atomic-scale structure of three nanocrystalline ZrO2 samples obtained by different techniques an...
International audienceFrom the liquid state to room temperature, two successive solid-state phase tr...
Mechanisms of tetragonal phase stabilisation, at room temperature, in nanocrystalline (\u3c100 nm), ...
Mechanisms of tetragonal phase stabilisation, at room temperature, in nanocrystalline (\u3c100 nm), ...
We synthesize, for the first time, using sol-gel technique and without doping any trivalent impuriti...
We synthesize, for the first time, using sol-gel technique and without doping any trivalent impuriti...
We synthesize, for the first time, using sol-gel technique and without doping any trivalent impuriti...
Zirconia can be considered to be one of the most important ceramic materials because of its large ra...
Synchrotron x-ray absorption spectra of four zirconia polymorphs (monoclinic, orthorhombic, tetragon...
Submicron and nano-sized nanocrystalline pure zirconia (ZrO2) powders having metastable tetragonal a...
The local atomic structures around the Zr atom of pure (undoped) ZrO(2) nanopowders with different a...
Submicron and nano-sized nanocrystalline pure zirconia (ZrO 2) powders having metastable tetragonal ...
Nanocrystalline (15-30 nm) and submicron-sized (500-600 nm) zirconia (ZrO2) particles are synthesize...
Nanocrystalline (15-30 nm) and submicron-sized (500-600 nm) zirconia (ZrO2) particles are synthesize...
We have studied the structures of zirconia nanoparticles formed by plasma-spraying an organo-metalli...
The atomic-scale structure of three nanocrystalline ZrO2 samples obtained by different techniques an...
International audienceFrom the liquid state to room temperature, two successive solid-state phase tr...