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Comparison of Three Ratiometric Temperature Readings from the Er3+ Upconversion Emission

机译:Er3 +上转换发射的三种比例温度读数的比较

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摘要

The emission of Er provides three combinations of emission bands suitable for ratiometric luminescence thermometry. Two combinations utilize ratios of visible emissions ( H → I at 523 nm/ S → I at 542 nm and F → I at 485 nm/ S → I at 545 nm), while emissions from the third combination are located in near-infrared, e.g., in the first biological window ( H → I at 793 nm/ S → I at 840 nm). Herein, we aimed to compare thermometric performances of these three different ratiometric readouts on account of their relative sensitivities, resolutions, and repeatability of measurements. For this aim, we prepared Yb ,Er :YF nanopowders by oxide fluorination. The structure of the materials was confirmed by X-ray diffraction analysis and particle morphology was evaluated from FE-SEM measurements. Upconversion emission spectra were measured over the 293–473 K range upon excitation by 980 nm radiation. The obtained relative sensitivities on temperature for 523/542, 485/542, and 793/840 emission intensity ratios were 1.06 ± 0.02, 2.03 ± 0.23, and 0.98 ± 0.10%K with temperature resolutions of 0.3, 0.7, and 1.8 K, respectively. The study showed that the higher relative temperature sensitivity does not necessarily lead to the more precise temperature measurement and better resolution, since it may be compromised by a larger uncertainty in measurement of low-intensity emission bands.
机译:Er的发射提供了适合于比例发光温度计的发射带的三种组合。两种组合利用可见光发射的比率(H→I在523 nm / S→I在542 nm和F→I在485 nm / S→I在545 nm在I),而第三种组合的发射位于近红外,例如,在第一个生物窗口中(H→I在793 nm / S→I在840 nm)。本文中,我们旨在比较这三种不同的比例读数的相对热敏性能,相对灵敏度,分辨率和测量的可重复性。为此,我们通过氧化物氟化制备了Yb,Er:YF纳米粉。通过X射线衍射分析确认了材料的结构,并通过FE-SEM测量评估了颗粒形态。在980 nm辐射激发下,在293–473 K范围内测量了上转换发射光谱。对于523 / 542、485 / 542和793/840发射强度比,获得的温度相对灵敏度分别为1.06±0.02、2.03±0.23和0.98±0.10%K,温度分辨率分别为0.3、0.7和1.8K。 。研究表明,较高的相对温度灵敏度并不一定会导致更精确的温度测量和更好的分辨率,因为低强度发射带的测量不确定性可能会损害它。

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