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首页> 外文期刊>ACS applied materials & interfaces >Multifunctional Optical Sensors for Nanomanometry and Nanothermometry: High-Pressure and High-Temperature Upconversion Luminescence of Lanthanide-Doped Phosphates-LaPO4/YPO4:Yb3+-Tm3+
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Multifunctional Optical Sensors for Nanomanometry and Nanothermometry: High-Pressure and High-Temperature Upconversion Luminescence of Lanthanide-Doped Phosphates-LaPO4/YPO4:Yb3+-Tm3+

机译:用于纳米数和纳米热测定的多功能光学传感器:高压和高温磷酸镧 - LAPO4 / YPO4:YB3 + -TM3 +的高压和高温上变化发光

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摘要

Upconversion luminescence of nano-sized YB3+ and Tm3+ codoped rare earth phosphates, that is, LaPO4 and YPO4, has been investigated under high-pressure (HP, up to similar to 25 GPa) and high-temperature (293-773 K) conditions. The pressure-dependent luminescence properties of the nanocrystals, that is, energy red shift of the band centroids, changes of the band ratios, shortening of upconversion lifetimes, and so forth, make the studied nanomaterials suitable for optical pressure sensing in nanomanometry. Furthermore, thanks to the large energy difference (similar to 1800 cm(-1)), the thermalized states of Tm3+ ions are spectrally well-separated, providing high-temperature resolution, required in optical nanothermometry. The temperature of the system containing such active nanomaterials can be determined on the basis of the thermally induced changes of the Tm3+ band ratio (F-3(2,3) - H-3(6)/H-3(4) - H-3(6)), observed in the emission spectra. The advantage of such upconverting optical sensors is the use of near-infrared light, which is highly penetrable for many materials. The investigated nanomanometers/nanothermometers have been successfully applied, as a proof-of-concept of a novel bimodal optical gauge, for the determination of the temperature of the heated system (473 K), which was simultaneously compressed under HP (1.5 and 5 GPa).
机译:在高压(HP,高达25GPa)和高温(293-773K)条件下,研究了纳米YB3 +和TM3 +编码稀土磷酸盐,即LAPO4和YPO4的稀土稀土磷酸盐。纳米晶体的压力依赖性发光性质,即带状质心的能量红移,带比的变化,缩短升高的寿命等,使研究适用于纳米统计学中的光学压力传感的纳米材料。此外,由于大的能量差(类似于1800cm(-1)),TM3 +离子的热化状态是光谱分离的,提供光学纳米热测定法所需的高温分辨率。含有这种活性纳米材料的系统的温度可以基于TM3 +带比的热诱导的变化(F-3(2,3) - & H-3(6)/ H-3(4))来确定 - & H-3(6)),在发射光谱中观察到。这种上变电传感器的优点是使用近红外光,这对于许多材料具有高度渗透。已经成功地应用了所研究的纳米计量计,作为新型双峰光学表的概念验证,用于测定加热系统(473K)的温度,其在HP(1.5和5GPa)下同时压缩)。

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