首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >3+/Tb 3+ co-doped β-NaYF 4 dual-emitting phosphors for self-referencing optical thermometry]]>
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3+/Tb 3+ co-doped β-NaYF 4 dual-emitting phosphors for self-referencing optical thermometry]]>

机译:<![cdata [cdata [ce 3 + / tb 3 + 共掺杂β-nayf 4 双发射荧光粉用于自引用光学温度测量]]>

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摘要

TraditionalFIR(fluorescence intensity ratio)-based optical thermometers, requiring narrow energy gap between two thermally coupled states (TCS) of single rare-earth ion, have inherent drawbacks including low signal discriminability and large measuring error. To overcome the intrinsic limitation, a new thermometry strategy involving the usage of dual-emitting activators with diverse temperature-dependent emission behaviours has been proposed. Impressively, β-NaYF4:Ce3+/Tb3+phosphor exhibits good temperature sensing performance, excellent signal discriminability and superior thermal stability by using the linearly temperature-dependent FIR between Ce3+and Tb3+as detecting parameter. Hopefully, the developed dual-emitting sample could have a promising application in self-calibrated luminescent thermometry and this strategy provides a reference for developing high-performance optical thermometers.
机译:基于传统过渡(荧光强度比)基础的光学温度计,需要在单一稀土离子的两个热耦合状态(TCS)之间的窄能隙,具有固有的缺点,包括低信号辨别性和大量测量误差。 为了克服内在的限制,已经提出了一种新的测温策略,涉及使用具有多种温度依赖性排放行为的双发射活化剂。 令人印象深刻,β-NayF4:CE3 + / TB3 +磷光体表现出良好的温度感测性能,通过使用CE3 +和TB3 +之间的线性温度依赖的杉木作为检测参数,通过线性温度依赖于线性依赖的杉木表现出良好的信号辨别性和卓越的热稳定性。 希望开发的双发射样品可以在自校准发光温度下具有有希望的应用,并且该策略为开发高性能光学温度计提供了参考。

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