...
首页> 外文期刊>Scientific reports. >Remote Control Effect of Li+, Na+, K+ Ions on the Super Energy Transfer Process in ZnMoO4:Eu3+, Bi3+ Phosphors
【24h】

Remote Control Effect of Li+, Na+, K+ Ions on the Super Energy Transfer Process in ZnMoO4:Eu3+, Bi3+ Phosphors

机译:Li +,Na +,K +离子对ZnMoO4:Eu3 +,Bi3 +荧光粉中超能传递过程的遥控作用

获取原文

摘要

Luminescent properties are affected by lattice environment of luminescence centers. The lattice environment of emission centers can be effectively changed due to the diversity of lattice environment in multiple site structure. But how precisely control the doped ions enter into different sites is still very difficult. Here we proposed an example to demonstrate how to control the doped ions into the target site for the first time. Alkali metal ions doped ZnMoO4:Bi(3+), Eu(3+) phosphors were prepared by the conventional high temperature solid state reaction method. The influence of alkali metal ions as charge compensators and remote control devices were respectively observed. Li(+) and K(+) ions occupy the Zn(2) sites, which impede Eu and Bi enter the adjacent Zn(2) sites. However, Na(+) ions lie in Zn(1) sites, which greatly promoted the Bi and Eu into the adjacent Zn(2) sites. The Bi(3+) and Eu(3+) ions which lie in the immediate vicinity Zn(2) sites set off intense exchange interaction due to their short relative distance. This mechanism provides a mode how to use remote control device to enhance the energy transfer efficiency which expected to be used to design efficient luminescent materials.
机译:发光特性受发光中心的晶格环境影响。由于多站点结构中晶格环境的多样性,可以有效改变发射中心的晶格环境。但是如何精确控制掺杂离子进入不同位置仍然非常困难。在这里,我们提出了一个示例来演示如何首次控制掺杂离子进入目标位点。碱金属离子掺杂的ZnMoO4:Bi(3 +),Eu(3+)荧光粉是通过常规的高温固态反应方法制备的。分别观察了碱金属离子作为电荷补偿剂和遥控装置的影响。 Li(+)和K(+)离子占据Zn(2)位置,这阻止Eu和Bi进入相邻的Zn(2)位置。但是,Na(+)离子位于Zn(1)位置,这极大地促进了Bi和Eu进入相邻的Zn(2)位置。在Bi(3+)和Eu(3+)离子紧邻Zn(2)位置,由于它们的相对距离较短,引起强烈的交换相互作用。该机制提供了一种模式,该模式如何使用远程控制设备来提高能量传输效率,这有望用于设计高效的发光材料。

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