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Ratiometric Temperature Imaging Using Environment-Insensitive Luminescence of Mn-Doped Core/Shell Nanocrystals

机译:使用环境不敏感的锰掺杂核/壳纳米晶体发光进行比例温度成像

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摘要

We report a ratiometric temperature imaging method based on Mn luminescence from Mn-doped CdS/ZnS nanocrystals (NCs) with controlled doping location, which is designed to exhibit strong temperature dependence of the spectral lineshape while being insensitive to the surrounding chemical environment. Ratiometric thermometry on Mn luminescence spectrum was performed by using Mn-doped CdS/ZnS core/shell NCs that have a large local lattice strain on Mn site, which results in the enhanced temperature dependence of the bandwidth and peak position. Mn luminescence spectral lineshape is highly robust with respect to the change in the polarity, phase and pH of the surrounding medium and aggregation of the NCs, showing great potential in temperature imaging under chemically heterogeneous environment. The temperature sensitivity (ΔIR/IR = 0.5%/K at 293 K, IR = intensity ratio at two different wavelengths) is highly linear in a wide range of temperatures from cryogenic to above-ambient temperatures. We demonstrate the surface temperature imaging of a cyro-cooling device showing the temperature variation of >200 K by imaging the luminescence of the NC film formed by simple spin coating, taking advantage of the environment-insensitive luminescence.
机译:我们报告了一种基于比例的温度成像方法,该方法基于具有受控掺杂位置的Mn掺杂CdS / ZnS纳米晶体(NC)的Mn发光,该方法旨在表现出光谱线形的强烈温度依赖性,同时对周围的化学环境不敏感。通过使用Mn掺杂的CdS / ZnS核/壳型NC进行Mn发光光谱的比值测温,这些Mn在Mn位置具有较大的局部晶格应变,从而导致带宽和峰位置的温度依赖性增强。 Mn发光光谱线形对于周围介质的极性,相和pH的变化以及NC的聚集具有很高的鲁棒性,在化学异质环境下的温度成像中显示出巨大的潜力。温度灵敏度(在293 K时ΔIR/ IR = 0.5%/ K,IR =在两种不同波长下的强度比)在从低温到高于室温的各种温度范围内具有高度线性关系。我们利用环境不敏感的发光技术,通过对由简单旋涂形成的NC膜的发光进行成像,展示了一个冷水冷却装置的表面温度成像,显示了> 200 K的温度变化。

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