In this paper we describe the synthesis and characterization of the YVO4:Eu3+ nanopowder. The material was prepared using simple solution combustion synthesis. X-ray powder diffraction (XRD), scanning electron microscope (SEM), Raman and photoluminescence (PL) techniques were used to confirm and characterize the prepared material. The time resolved analysis of emission spectra was achieved by using the streak camera system. Beside luminescence lifetime of slow decayed transitions we also measured their rise time and lifetime of fast decayed transitions. We also determitied the excitation spectra of this nano material. Results of our analysis prove that YVO4:Eu3(+) nanopowder is appropriate material for various optoelectronic devices. (C) 20...
Nanorods of YPxV1-xO4:Ln(3+) (Ln(3+) - Dy3+, Eu3+, Sm3+) have been synthesized hydrothermay. The sub...
Nanosized rare earth phosphovanadate phosphors (Y(P,V)O-4:Eu3+) have been prepared by applying the o...
AbstractRare earth doped phosphors have attracted much interest because of their high chemical durab...
In this paper we describe the synthesis and characterization of the YVO4:Eu3+ nanopowder. The materi...
Highly emissive Eu3+:YVO4 nanocrystals were successfully prepared by the hydrothermal method. The av...
Nanoparticles of Eu3+ doped YPO4 have been prepared by co-precipitation method. The structure, morph...
In this paper, we describe synthesis and characterization of YVO4 and Eu3+-doped YVO4 nanopowders. T...
Nano-sized particles of monoclinic-LaVO4 were prepared in a short reaction time of 30 minutes by emp...
Nano-sized particles of monoclinic-LaVO4 were prepared in a short reaction time of 30 minutes by emp...
In the past, an Eu3+-doped YVO4 bulk phosphor with a photoluminescence quantum yield (PLQY) of 70% w...
Eu3+ and Dy3+-doped YVO4 nanocrystallites were successfully prepared at 400 degrees C in equal moles...
Nano-sized particles of monoclinic-LaVO4 were prepared in a short reaction time of 30 minutes by emp...
Nano-sized particles of monoclinic-LaVO4 were prepared in a short reaction time of 30 minutes by emp...
Nano-sized particles of monoclinic-LaVO4 were prepared in a short reaction time of 30 minutes by emp...
Europium activated yttrium oxide red phosphors have gathered more attention because of their good lu...
Nanorods of YPxV1-xO4:Ln(3+) (Ln(3+) - Dy3+, Eu3+, Sm3+) have been synthesized hydrothermay. The sub...
Nanosized rare earth phosphovanadate phosphors (Y(P,V)O-4:Eu3+) have been prepared by applying the o...
AbstractRare earth doped phosphors have attracted much interest because of their high chemical durab...
In this paper we describe the synthesis and characterization of the YVO4:Eu3+ nanopowder. The materi...
Highly emissive Eu3+:YVO4 nanocrystals were successfully prepared by the hydrothermal method. The av...
Nanoparticles of Eu3+ doped YPO4 have been prepared by co-precipitation method. The structure, morph...
In this paper, we describe synthesis and characterization of YVO4 and Eu3+-doped YVO4 nanopowders. T...
Nano-sized particles of monoclinic-LaVO4 were prepared in a short reaction time of 30 minutes by emp...
Nano-sized particles of monoclinic-LaVO4 were prepared in a short reaction time of 30 minutes by emp...
In the past, an Eu3+-doped YVO4 bulk phosphor with a photoluminescence quantum yield (PLQY) of 70% w...
Eu3+ and Dy3+-doped YVO4 nanocrystallites were successfully prepared at 400 degrees C in equal moles...
Nano-sized particles of monoclinic-LaVO4 were prepared in a short reaction time of 30 minutes by emp...
Nano-sized particles of monoclinic-LaVO4 were prepared in a short reaction time of 30 minutes by emp...
Nano-sized particles of monoclinic-LaVO4 were prepared in a short reaction time of 30 minutes by emp...
Europium activated yttrium oxide red phosphors have gathered more attention because of their good lu...
Nanorods of YPxV1-xO4:Ln(3+) (Ln(3+) - Dy3+, Eu3+, Sm3+) have been synthesized hydrothermay. The sub...
Nanosized rare earth phosphovanadate phosphors (Y(P,V)O-4:Eu3+) have been prepared by applying the o...
AbstractRare earth doped phosphors have attracted much interest because of their high chemical durab...