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Ratiometric highly sensitive luminescent nanothermometers working in the room temperature range. Applications to heat propagation in nanofluids

机译:在室温范围内工作的比率式高灵敏度发光纳米温度计。在纳米流体中传热的应用

摘要

There is an increasing demand for accurate, non-invasive and self-reference temperature measurements as technology progresses into the nanoscale. This is particularly so in micro- and nanofluidics where the comprehension of heat transfer and thermal conductivity mechanisms can play a crucial role in areas as diverse as energy transfer and cell physiology. Here we present two luminescent ratiometric nanothermometers based on a magnetic core coated with an organosilica shell co-doped with Eu3+ and Tb3+ chelates. The design of the hybrid host and chelate ligands permits the working of the nanothermometers in a nanofluid at 293-320 K with an emission quantum yield of 0.38 ± 0.04, a maximum relative sensitivity of 1.5% K-1 at 293 K and a spatio-temporal resolution (constrained by the experimental setup) of 64 × 10-6 m/150 × 10-3 s (to move out of 0.4 K-the temperature uncertainty). The heat propagation velocity in the nanofluid, (2.2 ± 0.1) × 10-3 m s-1, was determined at 294 K using the nanothermometers' Eu3+/Tb3+ steady-state spectra. There is no precedent of such an experimental measurement in a thermographic nanofluid, where the propagation velocity is measured from the same nanoparticles used to measure the temperature. © 2013 The Royal Society of Chemistry.
机译:随着技术发展到纳米级,对准确,非侵入性和自参考温度测量的需求不断增长。在微流体和纳米流体领域尤其如此,其中传热和导热机制的理解可以在诸如能量传递和细胞生理学之类的各个领域发挥至关重要的作用。在这里,我们介绍了两个基于磁性核的发光比率纳米温度计,该核涂有共掺杂Eu3 +和Tb3 +螯合物的有机硅壳。杂化宿主和螯合配体的设计允许纳米温度计在293-320 K的纳米流体中工作,发射量子产率为0.38±0.04,在293 K时的最大相对灵敏度为1.5%K-1,并且具有时空分布。时间分辨率(受实验设置限制)为64×10-6 m / 150×10-3 s(移出温度不确定度0.4 K)。使用纳米温度计的Eu3 + / Tb3 +稳态光谱在294 K下确定了纳米流体中的传热速度(2.2±0.1)×10-3 m s-1。在热成像纳米流体中没有这种实验性测量的先例,其中从用于测量温度的相同纳米颗粒测量传播速度。 ©2013皇家化学学会。

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