Sub-micron sized crystalline particles of Eu3+ and Er3+-doped zirconia (ZrO2) were prepared via a wet chemical sol–gel route and post synthesis annealing. The doping was achieved by introduction of the respective rare earth salts into the zirconia precursor solution, with insitu generation of sodium chloride for stabilization of the particle surface during growth. A series of materials with differing europium content, nominally 0.3, 3 and 6 mol% within the ZrO2 lattice, were prepared for respective comparison and characterization of their optical properties following annealing at 700 °C. Average emission lifetimes of up to 2.3 ms were observed for the Eu3+-doped particles. Particle sizes, approximated from SEM micrographs, were observed in ...
ZrO2:Eu3+ hollow spheres were successfully fabricated with the resin microspheres as the template. T...
Class I organic–inorganic hybrid materials consisting of zirconia and zirconia/silica matrices doped...
Class I organic–inorganic hybrid materials consisting of zirconia and zirconia/silica matrices doped...
Sub-micron sized crystalline particles of Eu3+ and Er3+-doped zirconia (ZrO2) were prepared via a we...
Sub-micron sized crystalline particles of Eu3+ and Er3+-doped zirconia (ZrO2) were prepared via a we...
Sub-micron sized crystalline particles of Eu3+ and Er3+-doped zirconia (ZrO2) were prepared via a we...
Sub-micron sized crystalline particles of Eu3+ and Er3+-doped zirconia (ZrO2) were prepared via a we...
Eu3+-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods, ...
Eu3+-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods, ...
Eu3+-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods, ...
Eu3+-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods, ...
Eu3+-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods, ...
Eu3+-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods, ...
Eu3(+)-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods...
Partilhar documento na coleção da comunidade Laboratório Associado I3NZirconia nanocrystals doped wi...
ZrO2:Eu3+ hollow spheres were successfully fabricated with the resin microspheres as the template. T...
Class I organic–inorganic hybrid materials consisting of zirconia and zirconia/silica matrices doped...
Class I organic–inorganic hybrid materials consisting of zirconia and zirconia/silica matrices doped...
Sub-micron sized crystalline particles of Eu3+ and Er3+-doped zirconia (ZrO2) were prepared via a we...
Sub-micron sized crystalline particles of Eu3+ and Er3+-doped zirconia (ZrO2) were prepared via a we...
Sub-micron sized crystalline particles of Eu3+ and Er3+-doped zirconia (ZrO2) were prepared via a we...
Sub-micron sized crystalline particles of Eu3+ and Er3+-doped zirconia (ZrO2) were prepared via a we...
Eu3+-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods, ...
Eu3+-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods, ...
Eu3+-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods, ...
Eu3+-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods, ...
Eu3+-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods, ...
Eu3+-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods, ...
Eu3(+)-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods...
Partilhar documento na coleção da comunidade Laboratório Associado I3NZirconia nanocrystals doped wi...
ZrO2:Eu3+ hollow spheres were successfully fabricated with the resin microspheres as the template. T...
Class I organic–inorganic hybrid materials consisting of zirconia and zirconia/silica matrices doped...
Class I organic–inorganic hybrid materials consisting of zirconia and zirconia/silica matrices doped...