Increasing awareness of the potentially harmful impacts of nanomaterials on human health has led to a high demand for low-toxicity lanthanide (Ln)-doped nanophosphors in life science fields. The present study introduces a conceptually new approach based on a microplasma technique to produce high quality crystalline lanthanide doped nanophosphors. By selecting Eu 3+ doped yttria as a model for study, systematic experiments are carried out to synthesize Y 2 O 3 :Eu 3+ nanophosphors of controllable size and various Eu 3+ doping concentrations. The plasma-liquid interaction and the obtained products are examined by complementary analytical methods. Results demonstrate that ultra-high purity crystalline Y 2 O 3 :Eu 3+ nanophosphors can be succe...
Eu-doped Y2O3 nanophosphors were prepared using combustion synthesis. In this method, urea was emplo...
Plasma electrochemistry is an emerging technique for nanomaterial synthesis. The present study repor...
Luminescence exhibiting europium doped yttrium oxide (Y 2O 3:Eu 3+) phosphor was prepared by solutio...
Increasing awareness of the potentially harmful impacts of nanomaterials on human health has led to...
Increasing awareness of the potentially harmful impacts of nanomaterials on human health has led to ...
Increasing awareness of the potentially harmful impacts of nanomaterials on human health has led to...
\u3cp\u3e Increasing awareness of the poten...
With increasing health consciousness, Y 2 O 3 -based rare earth nanophosphors are considered as prom...
With increasing health consciousness, Y 2 O 3 -based rare earth nanophosphors are considered as pro...
With increasing health consciousness, Y 2 O 3 -based rare earth nanophosphors are considered as pro...
With increasing health consciousness, Y 2 O 3 -based rare earth nanophosphors are considered as pro...
With increasing health consciousness, Y 2 O 3 -based rare earth nanophosphors are considered as pro...
With increasing health consciousness, Y₂O₃‐based rare earth nanophosphors are considered as promisin...
We report a simple method for the synthesis of ultra-fine Eu3+-doped yttria (Y2O3) nanophosphors wit...
The Author(s) 2013. This article is published with open access at Springerlink.com Abstract The synt...
Eu-doped Y2O3 nanophosphors were prepared using combustion synthesis. In this method, urea was emplo...
Plasma electrochemistry is an emerging technique for nanomaterial synthesis. The present study repor...
Luminescence exhibiting europium doped yttrium oxide (Y 2O 3:Eu 3+) phosphor was prepared by solutio...
Increasing awareness of the potentially harmful impacts of nanomaterials on human health has led to...
Increasing awareness of the potentially harmful impacts of nanomaterials on human health has led to ...
Increasing awareness of the potentially harmful impacts of nanomaterials on human health has led to...
\u3cp\u3e Increasing awareness of the poten...
With increasing health consciousness, Y 2 O 3 -based rare earth nanophosphors are considered as prom...
With increasing health consciousness, Y 2 O 3 -based rare earth nanophosphors are considered as pro...
With increasing health consciousness, Y 2 O 3 -based rare earth nanophosphors are considered as pro...
With increasing health consciousness, Y 2 O 3 -based rare earth nanophosphors are considered as pro...
With increasing health consciousness, Y 2 O 3 -based rare earth nanophosphors are considered as pro...
With increasing health consciousness, Y₂O₃‐based rare earth nanophosphors are considered as promisin...
We report a simple method for the synthesis of ultra-fine Eu3+-doped yttria (Y2O3) nanophosphors wit...
The Author(s) 2013. This article is published with open access at Springerlink.com Abstract The synt...
Eu-doped Y2O3 nanophosphors were prepared using combustion synthesis. In this method, urea was emplo...
Plasma electrochemistry is an emerging technique for nanomaterial synthesis. The present study repor...
Luminescence exhibiting europium doped yttrium oxide (Y 2O 3:Eu 3+) phosphor was prepared by solutio...