LaPO4:Er3+ and LaPO4:Er3+/LaPO4 core/shell nanoparticles were synthesized in a high-boiling mixture solution of tributyl phosphate, trihexylamine and diphenylether. LaPO4:Er3+ nanoparticles of a spherical shape with a mean diameter of 5.0 nm were formed, while LaPO4:Er3+/LaPO4 core/shell nanoparticles resulted in an increase of the average size of nanoparticles (9.0 nm). The homogeneous inorganic-organic nanohybrid materials including LaPO4:Er3+ and LaPO4:Er3+/LaPO4 core/shell nanoparticles were prepared by dispersing the nanoparticles into the silica-based resin, which was synthesized by non-hydrolytic sol-gel method from (3-glycidyloxypropyl) trimethoxysilane (GPS), diphenylsilanediol (DPSD) and phenyltrimethoxysilane (FITS). The highly v...
Lanthanide ions are promising for the labeling of silica nanoparticles with a specific luminescent f...
The Author(s) 2013. This article is published with open access at Springerlink.com Abstract A simple...
Luminescence intensity of rare-earth doped materials can be varied depending on shape of particles, ...
Er3+ doped YbPO4 nanoparticles incorporated organic-inorganic nanohybrid material was prepared. Er3+...
Er3+ doped YbPO4 nanoparticles incorporated organic–inorganic nanohybrid material was prepared. Er3+...
The LaPO4:Er,Yb nanocrystals of average particle size about 5-7 nm were prepared from solution-based...
For possible applications as optical amplification materials in telecommunications, LaPO4:Er,Yb nano...
Due to the luminescence by Er 3+ activator, Er-doped LaPO 4 powders can be applied for optical ampli...
Er-doped LaPO4 micro-spheres have been synthesized by spray pyrolysis and the near infrared (NIR) pr...
Nanomaterials are embedded in a variety of products we use daily, e.g. silica nanocrystals are appli...
Nanomaterials are embedded in a variety of products we use daily, e.g. silica nanocrystals are appli...
LaPO4:Ce3+, Tb3+ nanoparticles were prepared by the reverse microemulsion with functional monomer, m...
Ce3+ and/or Tb3+-doped LaPO4 nanocrystalline thin films and their patterning were fabricated by a so...
Rare-earth ion (Eu3+, Tb3+, Ce3+)- doped LaPO4 nanocrystalline thin films and their patterning were ...
Co-precipitation reaction followed by hydrothermal treatment were used to synthesise Eu3+ or Tb3+ do...
Lanthanide ions are promising for the labeling of silica nanoparticles with a specific luminescent f...
The Author(s) 2013. This article is published with open access at Springerlink.com Abstract A simple...
Luminescence intensity of rare-earth doped materials can be varied depending on shape of particles, ...
Er3+ doped YbPO4 nanoparticles incorporated organic-inorganic nanohybrid material was prepared. Er3+...
Er3+ doped YbPO4 nanoparticles incorporated organic–inorganic nanohybrid material was prepared. Er3+...
The LaPO4:Er,Yb nanocrystals of average particle size about 5-7 nm were prepared from solution-based...
For possible applications as optical amplification materials in telecommunications, LaPO4:Er,Yb nano...
Due to the luminescence by Er 3+ activator, Er-doped LaPO 4 powders can be applied for optical ampli...
Er-doped LaPO4 micro-spheres have been synthesized by spray pyrolysis and the near infrared (NIR) pr...
Nanomaterials are embedded in a variety of products we use daily, e.g. silica nanocrystals are appli...
Nanomaterials are embedded in a variety of products we use daily, e.g. silica nanocrystals are appli...
LaPO4:Ce3+, Tb3+ nanoparticles were prepared by the reverse microemulsion with functional monomer, m...
Ce3+ and/or Tb3+-doped LaPO4 nanocrystalline thin films and their patterning were fabricated by a so...
Rare-earth ion (Eu3+, Tb3+, Ce3+)- doped LaPO4 nanocrystalline thin films and their patterning were ...
Co-precipitation reaction followed by hydrothermal treatment were used to synthesise Eu3+ or Tb3+ do...
Lanthanide ions are promising for the labeling of silica nanoparticles with a specific luminescent f...
The Author(s) 2013. This article is published with open access at Springerlink.com Abstract A simple...
Luminescence intensity of rare-earth doped materials can be varied depending on shape of particles, ...