Y2O3:Eu is a promising red-emitting phosphor owing to its high luminance efficiency, chemical stability, and non-toxicity. Although Y2O3:Eu thin films can be prepared by various deposition methods, most of them require high processing temperatures in order to obtain a crystalline structure. In this work, we report on the fabrication of red Y2O3:Eu thin film phosphors and multilayer structure Y2O3:Eu-based electroluminescent devices by atomic layer deposition at 300 °C. The structural and optical properties of the phosphor films were investigated using X-ray diffraction and photoluminescence measurements, respectively, whereas the performance of the fabricated device was evaluated using electroluminescence measurements. X-ray diffraction mea...
Atomic layer deposited (ALD) Y2O3 thin films have been thoroughly investigated for optical or electr...
AbstractIn this paper, Eu doped Y2O3 nanophosphors are prepared at temperature 600oC by the combusti...
This paper reports on Y2O3:Eu3+ containing 1 mol% of Ag-0 nanoparticle films recovered with a SiO2 l...
Y2O3:Eu is a promising red-emitting phosphor owing to its high luminance efficiency, chemical stabil...
Y2O3:Eu is a promising red-emitting phosphor owing to its high luminance efficiency, chemical stabil...
Y2O3:Eu is a promising red-emitting phosphor owing to its high luminance efficiency, chemical stabil...
UID/CTM/50025/2019 POCI-01-0145-FEDER-007688 PTDC/NAN-MAT/30812/2017Structural and photoluminescence...
Defence is held on 9.4.2022 12:00 – 15:00 Zoom: https://aalto.zoom.us/j/62291556369Atomic layer d...
Combined EELS, CL and STEM imaging are used to characterize and study Y2O3:Eu to confirm the variati...
AbstractIn this paper, Eu doped Y2O3 nanophosphors are prepared at temperature 600oC by the combusti...
[[abstract]]Y2O2S:Eu phosphors doped with different concentrations of Eu were fabricated by a high-t...
Luminescence exhibiting europium doped yttrium oxide (Y 2O 3:Eu 3+) phosphor was prepared by solutio...
Phosphor material is a light-emitting material that shows great potential in many photonic applicati...
Phosphor material is a light-emitting material that shows great potential in many photonic applicati...
Structural and photoluminescence studies were carried out on Eu-doped Y2O3−xSx thin films grown by a...
Atomic layer deposited (ALD) Y2O3 thin films have been thoroughly investigated for optical or electr...
AbstractIn this paper, Eu doped Y2O3 nanophosphors are prepared at temperature 600oC by the combusti...
This paper reports on Y2O3:Eu3+ containing 1 mol% of Ag-0 nanoparticle films recovered with a SiO2 l...
Y2O3:Eu is a promising red-emitting phosphor owing to its high luminance efficiency, chemical stabil...
Y2O3:Eu is a promising red-emitting phosphor owing to its high luminance efficiency, chemical stabil...
Y2O3:Eu is a promising red-emitting phosphor owing to its high luminance efficiency, chemical stabil...
UID/CTM/50025/2019 POCI-01-0145-FEDER-007688 PTDC/NAN-MAT/30812/2017Structural and photoluminescence...
Defence is held on 9.4.2022 12:00 – 15:00 Zoom: https://aalto.zoom.us/j/62291556369Atomic layer d...
Combined EELS, CL and STEM imaging are used to characterize and study Y2O3:Eu to confirm the variati...
AbstractIn this paper, Eu doped Y2O3 nanophosphors are prepared at temperature 600oC by the combusti...
[[abstract]]Y2O2S:Eu phosphors doped with different concentrations of Eu were fabricated by a high-t...
Luminescence exhibiting europium doped yttrium oxide (Y 2O 3:Eu 3+) phosphor was prepared by solutio...
Phosphor material is a light-emitting material that shows great potential in many photonic applicati...
Phosphor material is a light-emitting material that shows great potential in many photonic applicati...
Structural and photoluminescence studies were carried out on Eu-doped Y2O3−xSx thin films grown by a...
Atomic layer deposited (ALD) Y2O3 thin films have been thoroughly investigated for optical or electr...
AbstractIn this paper, Eu doped Y2O3 nanophosphors are prepared at temperature 600oC by the combusti...
This paper reports on Y2O3:Eu3+ containing 1 mol% of Ag-0 nanoparticle films recovered with a SiO2 l...