...
首页> 外文期刊>ACS Omega >Tuning the Doping of Europium in Gadolinium Borate Microparticles at Mesoscale Toward Efficient Production of Red Phosphors
【24h】

Tuning the Doping of Europium in Gadolinium Borate Microparticles at Mesoscale Toward Efficient Production of Red Phosphors

机译:在中尺度上调整scale在硼酸Ga微粒中的掺杂,以高效生产红色荧光粉

获取原文

摘要

The ideal product of rare-earth-doped phosphors should have uniform particle size distribution and homogeneous doping ions in each particle, and therefore, intensified micromixing at mesoscale is highly required. In this article, inspired by the concept of “mesoscience”, we demonstrate the tuning of Eu3+ doping in GdBO3 microparticles at mesoscale by a high-gravity-assisted reactive precipitation-coupled calcination process. The high-gravity environment and tiny droplets generated by the high-gravity rotating packed bed (RPB) reactor lead to significant intensification of mass transfer and micromixing, which are beneficial for the homogeneous doping of Eu3+ in the host material during reactive precipitation in liquid solution. Under excitation at 395 nm, the emission spectra of the Eu3+-doped phosphors exhibit a narrow-band red emission centered at 625 nm and the highest intensity was observed at x = 0.2. The RPB products show higher intensity than that of the control group even when the reaction time was shortened to 1/6. After calculation, the quenching in the sample most likely results from dipole–dipole interactions. The chromaticity coordinates for the RPB sample was measured as (0.598, 0.341) with a quantum yield of up to 78.11%, and the phosphors exhibit good thermal stability at 423 K. The phosphors were used as the luminescent materials for light-emitting diodes (LEDs), and the devices showed good performance. Our preliminary study illustrated that high-gravity-assisted approaches are promising for tuning the doping of rare-earth ions in microparticles at mesoscale toward efficient production of phosphors for LEDs.
机译:理想的稀土掺杂磷光体产品应该在每个颗粒中具有均匀的粒径分布和均匀的掺杂离子,因此,非常需要在中尺度上加强微混合。在本文中,受“介观科学”概念的启发,我们演示了通过高重力辅助反应沉淀耦合煅烧过程在中尺度上调节GdBO3微粒中Eu3 +掺杂的过程。高重力环境和高重力旋转填充床(RPB)反应器产生的微小液滴导致传质和微混合的显着增强,这有利于在液相溶液中反应性沉淀过程中基质材料中Eu3 +的均匀掺杂。在395 nm激发下,掺杂Eu3 +的磷光体的发射光谱显示出以625 nm为中心的窄带红色发射,并且在x = 0.2处观察到最高强度。即使反应时间缩短至1/6,RP​​B产物的强度仍高于对照组。经过计算,样品中的淬灭很可能是由偶极-偶极相互作用引起的。 RPB样品的色度坐标测量为(0.598,0.341),量子产率高达78.11%,磷光体在423 K时表现出良好的热稳定性。磷光体用作发光二极管的发光材料( LED),并且设备显示出良好的性能。我们的初步研究表明,高重力辅助方法有望以中等规模调整微粒中稀土离子的掺杂,从而有效地生产LED荧光粉。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号