首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Investigations on upconversion luminescence of K3Y(PO4)(2):Yb3+-Er3+/Ho3+/Tm3+ phosphors for optical temperature sensing
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Investigations on upconversion luminescence of K3Y(PO4)(2):Yb3+-Er3+/Ho3+/Tm3+ phosphors for optical temperature sensing

机译:K3Y(PO4)(2)(2):YB3 + -ER3 + / HO3 + / TM3 +荧光体的升高发光研究

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摘要

A series of Yb3+-Er3+/Ho3+/Tm3+ doped K3Y(PO4)(2) (KYP) phosphors were synthesized by solid-state reaction method. Several effective strategies for temperature sensing were introduced based on their upconversion (UC) luminescence properties. For Yb3+-Er3+ codoped KYP, it was found the relative intensities of different emissions of Er3+ change with temperature, and the repeatability of measurement was evaluated. The sensor sensitivities were calculated and compared based on the thermally coupled and non-thermally coupled levels of Er3+. For Yb3+-Ho3+ codoped KYP, red emission was obtained due to the strong F-5(5)-I-5(8) transition of Ho3+. With increasing temperature, the F-5(5)-I-5(8) and (F-5(4),S-5(2))-I-5(8) emissions show different decrease rates in intensity. The high absolute sensitivity of 0.078 K-1 was obtained from the dependence of the fluorescence intensity ratio (FIR) on temperature, but the relative sensitivity is low compared with that of Er3+ activated KYP. For Yb3+-Tm3+ codoped KYP, various emission peaks of Tm3+ have been found from the near-ultraviolet to near-infrared range. The temperature dependence of the FIR for (F-3(2),F-3(3))-H-3(6) and H-3(4)-H-3(6) transitions of Tm3+ reveals the relative sensitivity is more than twice as much as that of the Yb3+-Er3+ codoped KYP, but it shows a much lower absolute sensitivity due to the low FIR value. (C) 2018 Elsevier B.V. All rights reserved.
机译:一系列镱-Er3 + / Ho3 +共/ TM3 +掺杂K3Y(PO 4)(2)(KYP)荧光体是由固相反应法来合成。用于温度感测的几个有效的策略是基于它们的上转换(UC)的发光性能引入。中Yb3 + -Er3 +共掺杂KYP,发现随着温度铒变化的不同排放量的相对强度,以及测量的可重复性进行评价。传感器灵敏度计算并基于Er3 +离子的热耦合和非热耦合水平进行比较。中Yb3 + -Ho3 +共掺杂KYP,获得由于强F-5(5)-I-5(8)Ho3 +共的过渡红色发光。随着温度的升高,所述F-5(5)-I-5(8)和(F-5(4),S-5(2)) - I-5(8)的排放量显示不同强度减少率。从对温度的荧光强度比(FIR)的依赖性,得到0.078 K-1的高绝对灵敏度,但具有Er3 +离子的激活KYP相比的相对灵敏度是低的。中Yb3 + -Tm3 +共掺杂KYP,TM3 +的各种发射峰被从近紫外到近红外范围内找到。该FIR的温度依赖性为(F-3(2),F-3(3)) - H-3(6)和H-3(4)-H-3(6)TM3 +的过渡揭示了相对灵敏度超过两倍,所述镱-Er3 +的共掺杂KYP,但它示出了低得多的绝对灵敏度由于低FIR值。 (c)2018年elestvier b.v.保留所有权利。

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