Singh B P, Parchur A K, Ningthoujam R S, Ramakrishna P V, Singh S, Singh P, Rai S B, Maalej R
Department of Physics, Indian Institute of Technology (BHU), Varanasi, India-221005.
Phys Chem Chem Phys. 2014 Nov 7;16(41):22665-76. doi: 10.1039/c4cp02949f.
Y2Ti2O7:Er(3+)/Yb(3+) (EYYTO) phosphors co-doped with Li(+) ions were synthesized by a conventional solid-state ceramic method. X-ray diffraction studies show that all the Li(+) co-doped EYYTO samples are highly crystalline in nature with pyrochlore face centred cubic structure. X-ray photon spectroscopy studies reveal that the incorporation of Li(+) ions creates the defects and/or vacancies associated with the sample surface. The effect of Li(+) ions on the photoluminescence up-conversion intensity of EYYTO was studied in detail. The up-conversion study under ∼976 nm excitation for different concentrations of Li(+) ions showed that the green and red band intensities were significantly enhanced. The 2 at% Li(+) ion co-doped EYYTO samples showed nearly 15- and 8-fold enhancements in green and red band up-converted intensities compared to Li(+) ion free EYYTO. The process involved in the up-conversion emission was evaluated in detail by pump power dependence, the energy level diagram, and decay analysis. The incorporation of Li(+) ions modified the crystal field around the Er(3+) ions, thus improving the up-conversion intensity. To investigate the sensing application of the synthesized phosphor materials, temperature-sensing performance was evaluated using the fluorescence intensity ratio technique. Appreciable temperature sensitivity was obtained using the synthesized phosphor material, indicating its applicability as a high-temperature-sensing probe. The maximum sensitivity was found to be 0.0067 K(-1) at 363 K.
采用传统的固态陶瓷法合成了共掺杂锂离子的Y2Ti2O7:Er(3+)/Yb(3+)(EYYTO)荧光粉。X射线衍射研究表明,所有共掺杂锂离子的EYYTO样品在本质上都是高度结晶的,具有焦绿石面心立方结构。X射线光子能谱研究表明,锂离子的掺入产生了与样品表面相关的缺陷和/或空位。详细研究了锂离子对EYYTO光致发光上转换强度的影响。在约976nm激发下对不同浓度锂离子进行的上转换研究表明,绿色和红色带的强度显著增强。与无锂离子的EYYTO相比,2at%锂离子共掺杂的EYYTO样品在绿色和红色带上转换强度方面分别提高了近15倍和8倍。通过泵浦功率依赖性、能级图和衰减分析详细评估了上转换发射过程中涉及的过程。锂离子的掺入改变了Er(3+)离子周围的晶体场,从而提高了上转换强度。为了研究合成荧光粉材料的传感应用,使用荧光强度比技术评估了温度传感性能。使用合成的荧光粉材料获得了可观的温度灵敏度,表明其作为高温传感探针的适用性。在363K时发现最大灵敏度为0.0067K(-1)。