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Environmental and Excitation Power Effects on the Ratiometric Upconversion Luminescence Based Temperature Sensing Using Nanocrystalline NaYF4:Yb3+,Er3+

机译:使用纳米晶NayF4:YB3 +,ER3 +

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摘要

The luminescence intensity ratio (LIR) of the green emissions of the near-infrared excited NaYF4:Yb3+,Er3+ nanocrystals is a promising method for temperature sensing. Here, the influence of excitation power density, excitation pulse length, excitation wavelength, silica shell, and solvent on the LIR and its temperature response is reported. The primary objective is to study the LIR mechanism and the impact of measurement and environmental parameters on the calibration and precision of the LIR. The LIR value is demonstrated to be unaffected by the excitation intensity in the studied range. This result is essential, considering the application feasibility of the LIR method as temperature sensor, where the effective excitation power density depends on the sample matrix and the distance excitation light travels in the sample. The pulsed excitation, however, results in an increase in the LIR value upon short pulse width. Silanization of bare nanocrystals has no effect on the LIR values, but the local warming of H2O samples under laser exposure results in slightly increased LIR values compared to other solvents; D2O, oleic acid, and dimethyl sulfoxide. The thermal quenching of luminescence lifetimes of Er3+ emission is proved to be too weak for sensing applications.
机译:近红外激发NayF4:YB3 +,ER3 +纳米晶体的绿色排放的发光强度比(LIR)是温度传感的有希望的方法。这里,报道了激发功率密度,激发脉冲长度,激发波长,二氧化硅壳和溶剂对LIR及其温度响应的影响。主要目标是研究LIR机制和测量和环境参数对LIR校准和精度的影响。 LIR值被证明是不受所研究范围内激发强度的影响。考虑到LIR方法作为温度传感器的应用可行性,这结果是必不可少的,其中有效激励功率密度取决于样品矩阵和距离激励光在样品中行进。然而,脉冲激励导致在短脉冲宽度时增加LIR值。裸纳米晶体的硅烷化对LIR值没有影响,但与其他溶剂相比,激光暴露下的H2O样品的局部加热导致LIR值略微增加; D2O,油酸和二甲基亚甲醚。 ER3 +排放的发光寿命的热猝灭被证明对于传感应用来说太弱。

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