Er3+-doped CaF2 nanoparticles (NPs) with variable dopant concentration were synthesized by a direct precipitation method. X-Ray Powder Diffraction, SEM and TEM were used to analize the crystalline structure and morphology. The spectroscopic characterization, as function of the Er3+ content, has been performed under CW and pulsed excitation. Under steady state conditions, it has been found that the intensity of the main emission bands is affected by luminescence quenching processes. The population dynamics, recorded under pulsed excitation, confirms not only the existence of quenching processes but also the occurrence of radiation trapping. The intrinsic transition probabilities of the main Er3+ emitting manifolds, in absence of quenching an...
Rare‐earth based luminescent materials are key functional components for the rational design of ligh...
Europium (Eu) doped Calcium fluoride (CaF 2) nanoparticles are synthesized by co-precipitation metho...
Lanthanide (Ln)-doped nanoparticles have shown potential for applications in various fields. However...
International audienceThe incorporation site of Er dopants inserted at high and low concentration (r...
Colloidal Er3+/Yb3+, Tm3+/Yb3+ and Ho3+/Yb3+ doped CaF2 nanoparticles have been prepared by a one-po...
Europium (Eu) doped Calcium fluoride (CaF2) nanoparticles are synthesized by co-precipitation method...
Lanthanide (Ln)-doped nanoparticles have shown potential for applications in various fields. However...
Eu3+ doped CaF2 and SrF2 nanoparticles were synthesized through a facile hydrothermal technique, usi...
Nanostructures of calcium fluoride (CaF2) doped with Eu, Tb, Dy, Cu, and Ag were synthesized by the ...
Thermoluminescence of CaF2:Ce, BaF2, and BaF2:Ce irradiated at room temperature is reported. X-ray i...
Mesoporous CaF2 nanopowders with the specific surface area up to 88.7 m2/g have been produced by the...
The development of highly luminescent water-dispersible biocompatible nanoparticles is a hot topic i...
CaF2 : Dy est un des plus importants matériaux utilisés pour la dosimétrie thermoluminescente. CaF2 ...
Trivalent europium doped calcium fluoride nanoparticles have been investigated using laser site sel...
Lanthanide ions (Ln(3+))-doped CaF2 luminescent nanoparticles exhibit unique optical properties and ...
Rare‐earth based luminescent materials are key functional components for the rational design of ligh...
Europium (Eu) doped Calcium fluoride (CaF 2) nanoparticles are synthesized by co-precipitation metho...
Lanthanide (Ln)-doped nanoparticles have shown potential for applications in various fields. However...
International audienceThe incorporation site of Er dopants inserted at high and low concentration (r...
Colloidal Er3+/Yb3+, Tm3+/Yb3+ and Ho3+/Yb3+ doped CaF2 nanoparticles have been prepared by a one-po...
Europium (Eu) doped Calcium fluoride (CaF2) nanoparticles are synthesized by co-precipitation method...
Lanthanide (Ln)-doped nanoparticles have shown potential for applications in various fields. However...
Eu3+ doped CaF2 and SrF2 nanoparticles were synthesized through a facile hydrothermal technique, usi...
Nanostructures of calcium fluoride (CaF2) doped with Eu, Tb, Dy, Cu, and Ag were synthesized by the ...
Thermoluminescence of CaF2:Ce, BaF2, and BaF2:Ce irradiated at room temperature is reported. X-ray i...
Mesoporous CaF2 nanopowders with the specific surface area up to 88.7 m2/g have been produced by the...
The development of highly luminescent water-dispersible biocompatible nanoparticles is a hot topic i...
CaF2 : Dy est un des plus importants matériaux utilisés pour la dosimétrie thermoluminescente. CaF2 ...
Trivalent europium doped calcium fluoride nanoparticles have been investigated using laser site sel...
Lanthanide ions (Ln(3+))-doped CaF2 luminescent nanoparticles exhibit unique optical properties and ...
Rare‐earth based luminescent materials are key functional components for the rational design of ligh...
Europium (Eu) doped Calcium fluoride (CaF 2) nanoparticles are synthesized by co-precipitation metho...
Lanthanide (Ln)-doped nanoparticles have shown potential for applications in various fields. However...