Department of Electronics and Radio Engineering, Institute for Laser Engineering, Kyung Hee University, 1 Seocheon-dong, Giheung-gu, Yongin-si, Gyeonggi-do 446-701, Republic of Korea.
Phys Chem Chem Phys. 2012 Aug 28;14(32):11296-307. doi: 10.1039/c2cp41722g. Epub 2012 Jul 11.
Trivalent rare-earth (RE) ions (Eu(3+), Tb(3+) and Sm(3+)) activated multicolor emitting SrY(2)O(4) phosphors were synthesized by a sol-gel process. The structural and morphological studies were performed by the measurements of X-ray diffraction profiles and scanning electron microscope (SEM) images. The pure phase of SrY(2)O(4) appeared after annealing at 1300 °C and the doping of RE ions did not show any effect on the structural properties. From the SEM images, the closely packed particles were observed due to the roughness of each particle tip. The photoluminescence (PL) analysis of individual RE ions activated SrY(2)O(4) phosphors exhibits excellent emission properties in their respective regions. The Eu(3+) co-activated SrY(2)O(4):Tb(3+) phosphor creates different emissions by controlling the energy transfer from Tb(3+) to Eu(3+) ions. Based on the excitation wavelengths, multiple (green, orange and white) emissions were obtained by Sm(3+) ions co-activated with SrY(2)O(4):Tb(3+) phosphors. The decay measurements were carried out for analyzing the energy transfer efficiency and the possible ways of energy transfer from donor to acceptor. The cathodoluminescence properties of these phosphors show similar behavior as PL properties except the energy transfer process. The obtained results indicated that the energy transfer process was quite opposite to the PL properties. The calculated CIE chromaticity coordinates of RE ions activated SrY(2)O(4) phosphors confirmed the red, green, orange and white emissions.
三价稀土(RE)离子(Eu(3+)、Tb(3+)和 Sm(3+))激活的多色发射 SrY(2)O(4)荧光粉通过溶胶-凝胶法合成。通过 X 射线衍射谱和扫描电子显微镜(SEM)图像的测量进行了结构和形态研究。在 1300°C 退火后出现纯相 SrY(2)O(4),并且 RE 离子的掺杂对结构性质没有任何影响。从 SEM 图像中可以看出,由于每个颗粒尖端的粗糙度,观察到了紧密堆积的颗粒。单独的 RE 离子激活 SrY(2)O(4)荧光粉的光致发光(PL)分析在各自的区域表现出优异的发射性能。Eu(3+)共激活 SrY(2)O(4):Tb(3+)荧光粉通过控制 Tb(3+)到 Eu(3+)离子的能量转移,产生不同的发射。基于激发波长,Sm(3+)离子共激活 SrY(2)O(4):Tb(3+)荧光粉获得了多种(绿色、橙色和白色)发射。进行了衰减测量以分析能量转移效率和从供体到受体的可能能量转移方式。这些荧光粉的阴极发光特性与 PL 特性相似,除了能量转移过程之外。所得结果表明,能量转移过程与 PL 特性完全相反。RE 离子激活 SrY(2)O(4)荧光粉的计算 CIE 色度坐标证实了红色、绿色、橙色和白色发射。