首页> 外文期刊>RSC Advances >Aerosol synthesis of TiO2:Er3+/Yb3+ submicron-sized spherical particles and upconversion optimization for application as anti-counterfeiting materials
【24h】

Aerosol synthesis of TiO2:Er3+/Yb3+ submicron-sized spherical particles and upconversion optimization for application as anti-counterfeiting materials

机译:TiO2气溶胶合成:ER3 + / YB3 +亚微米球形颗粒和升高的应用作为防伪材料的升级优化

获取原文
       

摘要

Er ~(3+) /Yb ~(3+) -doped TiO _(2) up-conversion (UC) phosphors were prepared by spray pyrolysis, and the UC luminescence properties were optimized by changing the calcination temperature and the concentration of Er ~(3+) and Yb ~(3+) dopants. TiO _(2) :Er ~(3+) /Yb ~(3+) showed green and red emissions due to the ~(2) H _(11/2) / ~(4) S _(3/2) → ~(4) I _(15/2) transition and the ~(4) F _(9/2) → ~(4) I _(15/2) transition of Er ~(3+) ions, respectively. The R/G ratio between red (R) and green (G) emissions does not change significantly with Er concentration but increases linearly with increasing Yb ~(3+) concentration. The dependence of UC luminescence intensity on 980 nm IR pumping power showed that both the red and green UC luminescence of TiO _(2) :Er ~(3+) /Yb ~(3+) occurred through a typical two-photon process. In terms of achieving the highest red UC emission intensity, the optimal Er ~(3+) and Yb ~(3+) contents are 0.3% and 7.0%, respectively. The UC intensity of TiO _(2) :Er ~(3+) /Yb ~(3+) particles increases until they are calcined at temperatures up to 600 °C and then decreases rapidly above 800 °C. This is because when the calcination temperature is 800 °C and higher, not only does the phase transition of TiO _(2) :Er ~(3+) /Yb ~(3+) occur from anatase to rutile, but also the Yb _(2) Ti _(2) O _(7) impurity phase is formed. According to SEM and TEM/EDX analysis, the prepared TiO _(2) :Er ~(3+) /Yb ~(3+) UC powders have an average particle size of 680 nm, a spherical shape with a dense structure, and Er and Yb are uniformly dispersed throughout the particles without local separation. A mark prepared using TiO _(2) :Er ~(3+) /Yb ~(3+) powder was found to have a UC emission high enough to be visually observed when irradiated with a portable 980 nm IR lamp.
机译:ER〜(3+)/ YB〜(3+) - 通过喷雾热解制备上转换(UC)荧光体,通过改变煅烧温度和er的浓度来优化UC发光性能〜(3+)和YB〜(3+)掺杂剂。 TiO_(2):ER〜(3+)/ YB〜(3+)显示绿色和红色排放,因为〜(2)H _(11/2)/〜(4)S _(3/2) →〜(4)I _(15/2)转换和〜(4)f _(9/2)→〜(4)I _(15/2)分别转换ER〜(3+)离子。红色(R)和绿色(G)排放之间的R / G比不会随着ER浓度显着变化,但随着YB〜(3+)浓度的增加而导致线性增加。 UC发光强度对980nm IR泵送电力的依赖性显示TiO _(2):ER〜(3+)/ Yb〜(3+)的红色和绿色UC发光均通过典型的双光子工艺发生。就达到最高的红UC发射强度而言,最佳ER〜(3+)和YB〜(3+)含量分别为0.3%和7.0%。 TiO _(2):ER〜(3+)/ Yb〜(3+)颗粒的UC强度增加,直到它们在高达600℃的温度下煅烧,然后在800℃高于800℃的温度下降低。这是因为当煅烧温度为800℃和更高时,不仅TiO _(2)的相变(2):ER〜(3+)/ Yb〜(3+)的相位过渡来自锐钛酶,而且是YB _(2)Ti _(2)O _(7)o _(7)杂质相。根据SEM和TEM / EDX分析,制备的TiO_(2):ER〜(3+)/ YB〜(3+)UC粉末的平均粒径为680nm,具有致密结构的球形形状,和ER和Yb在整个颗粒中均匀地分散而不局部分离。使用TiO _(2):ER〜(3+)/ Yb〜(3+)粉末制备的标记在用便携式980nm红外灯照射时足够高,在视觉上观察到足够高的UC发射。

著录项

  • 来源
    《RSC Advances》 |2020年第28期|共7页
  • 作者

    Kyeong Youl Jung;

  • 作者单位
  • 收录信息
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

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