Ramaraghavulu R, Naresh V, Eswaraiah V
Department of Physics, Sri Venkateswara University, Tirupati, 517502, India.
Department of Materials Science and Engineering, Korea University, 145 Anam-ro Seonbuk-gu, Seoul, 136-713, South Korea.
Luminescence. 2017 Feb;32(1):11-16. doi: 10.1002/bio.3141. Epub 2016 Apr 20.
A solid-state reaction route-based LiTi Eu (PO ) was phosphor synthesized for the first time to evaluate its luminescence performance by excitation, emission and lifetime (τ) measurements. The LiTi Eu (PO ) phosphor was excited at λ = 397 nm to give an intense orange-red (597 nm) emission attributed to the D → F magnetic dipole (ΔJ = ±1) transition and red (616 nm) emission ( D → F ), which is an electric dipole (ΔJ = ±2) transition of the Eu ion. Beside this, excitation and emission spectra of host LiTi (PO ) powder were also reported. The effect of Eu concentration on luminescence characteristics was explained from emission and lifetime profiles. Concentration quenching in the LiTi Eu (PO ) phosphor was studied from the Dexter's model. Dipole-quadrupole interaction is found to be responsible for energy transfer among Eu ions in the host lattice. The LiTi Eu (PO ) phosphor displayed a reddish-orange colour realized from a CIE chromaticity diagram. We therefore suggest that this new phosphor could be used as an optical material of technological importance in the field of display devices. Copyright © 2016 John Wiley & Sons, Ltd.
首次通过基于固态反应路线合成了LiTi Eu (PO ) 荧光粉,并通过激发、发射和寿命(τ)测量来评估其发光性能。LiTi Eu (PO ) 荧光粉在λ = 397 nm处被激发,产生归因于 D → F 磁偶极(ΔJ = ±1)跃迁的强烈橙红色(597 nm)发射以及红色(616 nm)发射( D → F ),这是Eu离子的电偶极(ΔJ = ±2)跃迁。除此之外,还报道了主体LiTi (PO ) 粉末的激发和发射光谱。从发射和寿命曲线解释了Eu浓度对发光特性的影响。根据德克斯特模型研究了LiTi Eu (PO ) 荧光粉中的浓度猝灭。发现偶极 - 四极相互作用是主体晶格中Eu离子之间能量转移的原因。LiTi Eu (PO ) 荧光粉在CIE色度图上呈现出红橙色。因此,我们认为这种新型荧光粉可作为显示设备领域具有技术重要性的光学材料。版权所有© 2016约翰威立父子有限公司。