...
首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >A temperature sensor based on the enhanced upconversion luminescence of Li+ doped NaLuF4:Yb3+,Tm3+/Er3+ nano/microcrystals
【24h】

A temperature sensor based on the enhanced upconversion luminescence of Li+ doped NaLuF4:Yb3+,Tm3+/Er3+ nano/microcrystals

机译:基于Li +掺杂NALUF4:YB3 +,TM3 + / ER3 +纳米/微晶的增强升高发光的温度传感器

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

In this paper, fluorescent and optical temperature sensing bi-functional Li+-doping NaLuF4:Ln (Ln = Yb3+, Tm3+/Er3+) nanocrystals were synthesized via a simple hydrothermal method using oleic acid as a capping ligand. The crystal phase, size, upconversion (UC) properties, and optical temperature sensing characteristics of the crystals can be easily modified by Li+ doping. The results reveal that additional Li+ can promote the transformation from the hexagonal phase to the cubic phase and reduce the size of the nanocrystals. In addition, NaLuF4:Ln (Ln = Yb3+, Tm3+, Li+) nanocrystals present efficient near infrared (NIR) emission, which is beneficial for in vivo biomedical applications due to the increased penetration depth and low radiation damage of NIR light in bio-tissues. More importantly, under 980 nm excitation, the temperature dependent UCL from the H-2(11/2) and S-4(3/2) levels of Er3+ ions in NaLuF4:Yb3+,Er3+,Li+ microcrystals was investigated systematically. The fluorescence intensity ratios (FIR) of the pairs of thermally coupled levels were studied as a function of temperature in the range of 298-523 K. The maximum sensor sensitivities were found to be about 0.0039 K-1 (523 K) by exploiting the UC emissions from the H-2(11/2) and S-4(3/2) levels. This suggests that the Li+-doped upconversion luminescence (UCL) materials are promising prototypes for application as multi-mode probes for use in bio-separation and optical thermometers.
机译:本文通过使用油酸作为封端配体,通过简单的水热法合成荧光和光学温度检测双官能Li + - 掺杂NALUF4:LN(LN = YB3 +,TM3 + / ER3 +)纳米晶。晶相,尺寸,上变化(UC)性能和光学温度感测特性和光学温度感测特性可以通过Li +掺杂容易地修改。结果表明,额外的Li +可以从六边形阶段促进转化到立方相并减小纳米晶体的尺寸。此外,NALUF4:LN(LN = YB3 +,TM3 +,Li +,Li +,Li +,Li +)纳米晶体存在有效的近红外(NIR)排放,这对体内生物医学应用有益,因为生物组织中NIR光的渗透深度和低辐射损伤增加。更重要的是,在980nm激发下,系统地研究了来自H-2(11/2)和S-4(3/2)ER3 +离子的温度依赖性UCL的温度依赖性UCL,在NALUF 4:YB3 +,ER3 +,Li +微晶中进行了水平。研究了热耦合水平对的荧光强度比(FIR)作为温度的函数,在298-523k的范围内。发现最大传感器敏感性是通过开采约0.0039k-1(523k)。来自H-2(11/2)和S-4(3/2)水平的UC排放。这表明Li +掺杂的上变发光(UCL)材料是希望应用于用于生物分离和光学温度计的多模探针的原型。

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