Nano-sized particles of monoclinic-LaVO4 were prepared in a short reaction time of 30 minutes by employing a microwave assisted hydrothermal synthesis in the presence of glycerol, which was used both as a solvent and structure-directing agent. The tetragonal-LaVO4 is known to show strong luminescence properties when doped with Ln(3+), whereas the monoclinic-LaVO4 is usually considered not suitable for luminescence and therefore luminescence properties of monoclinic-LaVO4 doped with Ln(3+) ions are seldom investigated. Due to the scarce amount of research on the topic of luminescence of Ln(3+) doped monoclinic-LaVO4 in this paper a detailed study of solid state luminescence properties, including quantum yields, of nano-sized monoclinic-LaVO4...
This paper demonstrates the effects of Li+ co-doping on the structure, morphology, and luminescence ...
A simple and single-step method for the production of Ln-doped YVO 4 nanocrystals and their simultan...
Well-defined t-LaVO4:Eu3+ microcrystals have been synthesized through a facile hydrothermal route us...
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...
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...
Colloidal, organic solvent-soluble Ln3+-doped LaVO4 nanoparticles have been synthesized by a precipi...
Pure monoclinic- (m) and tetragonal (t) LaVO4:Eu nanocrystals were prepared by a facile citric anion...
Rare-earth ions (Eu3+, Dy3+, Sm3+) doped YVO4 microspheres with uniform morphologies were successful...
The compositional and structural properties of nanocrystalline lanthanum orthovanadate (LaVO4), obta...
Uniform and well-dispersed quasi-spherical YVO4:Ln(3+) (Ln Eu, Dy) nanoparticles have been successfu...
This paper demonstrates the effects of Li+ co-doping on the structure, morphology, and luminescence ...
This paper demonstrates the effects of Li+ co-doping on the structure, morphology, and luminescence ...
A simple and single-step method for the production of Ln-doped YVO 4 nanocrystals and their simultan...
Well-defined t-LaVO4:Eu3+ microcrystals have been synthesized through a facile hydrothermal route us...
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...
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...
Colloidal, organic solvent-soluble Ln3+-doped LaVO4 nanoparticles have been synthesized by a precipi...
Pure monoclinic- (m) and tetragonal (t) LaVO4:Eu nanocrystals were prepared by a facile citric anion...
Rare-earth ions (Eu3+, Dy3+, Sm3+) doped YVO4 microspheres with uniform morphologies were successful...
The compositional and structural properties of nanocrystalline lanthanum orthovanadate (LaVO4), obta...
Uniform and well-dispersed quasi-spherical YVO4:Ln(3+) (Ln Eu, Dy) nanoparticles have been successfu...
This paper demonstrates the effects of Li+ co-doping on the structure, morphology, and luminescence ...
This paper demonstrates the effects of Li+ co-doping on the structure, morphology, and luminescence ...
A simple and single-step method for the production of Ln-doped YVO 4 nanocrystals and their simultan...
Well-defined t-LaVO4:Eu3+ microcrystals have been synthesized through a facile hydrothermal route us...