Ramakrishna G, Nagabhushana H, Prashantha S C, Sharma S C, Nagabhushana B M
Department of Physics, University College of Science, Tumkur University, Tumkur 572 103, India.
Prof. C.N.R. Rao Centre for Advanced Materials, Tumkur University, Tumkur 572 103, India.
Spectrochim Acta A Mol Biomol Spectrosc. 2015 Feb 5;136 Pt B:356-65. doi: 10.1016/j.saa.2014.09.041. Epub 2014 Sep 28.
The study involves preparation of samarium doped Y2SiO5 (YSO) nano powders by solution combustion method using urea as a fuel for the first time. Effect of different fluxes on the crystallization behavior, morphology and photoluminescence (PL) properties of YSO:Sm(3+) (1-9 mol%) were investigated. The final product was characterized by Powder X-ray diffraction (PXRD), Scanning Electron Microscopy (SEM) and UV-Vis spectroscopy. The average crystallite size estimated by Debye-Scherer's and Williamson-Hall plots were found to be in the range of 10-50 nm. Samples calcined at 1100°C show pure monoclinic X1 phase; whereas, samples calcined at 1200 and 1300°C show pure X2 phase of YSO. Photoluminescence (PL) studies of Sm(3+) (1-9 mol%) doped YSO for near ultra violet (NUV) excitation (407 nm) was studied in order to investigate the possibility of its use in white light emitting diode (WLED) applications. The emission spectra consists of intra 4f transitions of Sm(3+), such as (4)G5/2→(6)H5/2 (∼560 nm), (4)G5/2→(6)H7/2 (600-613 nm), (4)G5/2→(6)H9/2 (∼650 nm), (4)G5/2→(6)H11/2 (715 nm) and (4)G5/2→(6)H13/2 (763 nm) respectively. The emission intensity of the phosphor was found to be enhancing after addition of fluxes. Further, the emission at 600-613 nm show strong orange-red emission and can be applied to the orange-red emission of phosphor for near ultra violet excitation.
该研究首次采用尿素作为燃料,通过溶液燃烧法制备了钐掺杂的Y2SiO5(YSO)纳米粉末。研究了不同助熔剂对YSO:Sm(3+)(1-9摩尔%)的结晶行为、形貌和光致发光(PL)性能的影响。最终产物通过粉末X射线衍射(PXRD)、扫描电子显微镜(SEM)和紫外可见光谱进行表征。通过德拜-谢乐和威廉姆森-霍尔图估计的平均微晶尺寸在10-50纳米范围内。在1100°C煅烧的样品呈现纯单斜X1相;而在1200和1300°C煅烧的样品呈现YSO的纯X2相。对Sm(3+)(1-9摩尔%)掺杂的YSO进行了近紫外(NUV)激发(407纳米)的光致发光(PL)研究,以探讨其在白光发光二极管(WLED)应用中的可能性。发射光谱由Sm(3+)的4f内跃迁组成,例如(4)G5/2→(6)H5/2(560纳米)、(4)G5/2→(6)H7/2(600-613纳米)、(4)G5/2→(6)H9/2(650纳米)、(4)G5/2→(6)H11/2(715纳米)和(4)G5/2→(6)H13/2(763纳米)。添加助熔剂后,荧光粉的发射强度增强。此外,600-613纳米处的发射显示出强烈的橙红色发射,可用于近紫外激发荧光粉的橙红色发射。