Scanning-Transmission and Transmission Electron Microscopy techniques (STEM and TEM) have been applied to the characterization of nanostructured gadolinium oxides doped with europium synthesized by spray pyrolysis. The High Angle Annular Dark Field (HAADF) – Scanning Transmission Electron Microscopy (STEM) tools have been used to perform a tomographic study to identify morphological characteristics of nanostructured particles, and to differentiate them according to the heat treatments to which these have been subjected. With these techniques it has been possible to confirm the hollowness and porous nature of samples subjected to low temperature annealing (900 °C). Moreover, the beginning of the densification and sintering processes in sampl...
Gadolinium and Ytrium oxides doped with europium (Gd<sub>2</sub>O<sub>3</sub>...
Poster presented at the International Roundtable on Advanced Wide Band Gap Materials for Radiation D...
Transmission electron microscopy (TEM) is a powerful and versatile tool for investigating nanomateri...
Scanning-Transmission and Transmission Electron Microscopy techniques (STEM and TEM) have been appli...
Proocedings of: Fourth Conference on the Characterization and Control of Interfaces for High Quality...
Proocedings of: Fourth Conference on the Characterization and Control of Interfaces for High Quality...
Scanning-Transmission and Transmission Electron Microscopy techniques (STEM and TEM) have been appli...
Proocedings of: Fourth Conference on the Characterization and Control of Interfaces for High Quality...
Proocedings of: Fourth Conference on the Characterization and Control of Interfaces for High Quality...
In this paper, the influence of the Eu3+ center concentration on the structural and morphological pr...
In this paper, the influence of the Eu3+ center concentration on the structural and morphological pr...
Low dimensional europium (Eu<SUP>3+</SUP>)-doped gadolinium oxide (Gd<SUB>2</SUB>O<SUB>3</SUB>) lant...
The processing of europium-doped gadolinia (Gd2O3:Eu) nanostructured particles has been realized usi...
The processing of europium-doped gadolinia (Gd2O3:Eu) nanostructured particles has been realized usi...
Poster presented at the Seventh International Conference on Mechanochemistry and Mechanical Alloying...
Gadolinium and Ytrium oxides doped with europium (Gd<sub>2</sub>O<sub>3</sub>...
Poster presented at the International Roundtable on Advanced Wide Band Gap Materials for Radiation D...
Transmission electron microscopy (TEM) is a powerful and versatile tool for investigating nanomateri...
Scanning-Transmission and Transmission Electron Microscopy techniques (STEM and TEM) have been appli...
Proocedings of: Fourth Conference on the Characterization and Control of Interfaces for High Quality...
Proocedings of: Fourth Conference on the Characterization and Control of Interfaces for High Quality...
Scanning-Transmission and Transmission Electron Microscopy techniques (STEM and TEM) have been appli...
Proocedings of: Fourth Conference on the Characterization and Control of Interfaces for High Quality...
Proocedings of: Fourth Conference on the Characterization and Control of Interfaces for High Quality...
In this paper, the influence of the Eu3+ center concentration on the structural and morphological pr...
In this paper, the influence of the Eu3+ center concentration on the structural and morphological pr...
Low dimensional europium (Eu<SUP>3+</SUP>)-doped gadolinium oxide (Gd<SUB>2</SUB>O<SUB>3</SUB>) lant...
The processing of europium-doped gadolinia (Gd2O3:Eu) nanostructured particles has been realized usi...
The processing of europium-doped gadolinia (Gd2O3:Eu) nanostructured particles has been realized usi...
Poster presented at the Seventh International Conference on Mechanochemistry and Mechanical Alloying...
Gadolinium and Ytrium oxides doped with europium (Gd<sub>2</sub>O<sub>3</sub>...
Poster presented at the International Roundtable on Advanced Wide Band Gap Materials for Radiation D...
Transmission electron microscopy (TEM) is a powerful and versatile tool for investigating nanomateri...