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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Multiwavelength Fluorescence Intensity Ratio Nanothermometry: High Sensitivity over a Broad Temperature Range
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Multiwavelength Fluorescence Intensity Ratio Nanothermometry: High Sensitivity over a Broad Temperature Range

机译:多波长荧光强度比纳米热测定法:在宽温度范围内高灵敏度

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摘要

The use of multiple wavelength emissions of rare earth-doped nanomaterials was investigated for optical, nanothermometry, based on a ratiometric technique. A methodology, based on the luminescence associated to different pairs of thermally coupled Stark sublevels, was proposed. This new approach enabled the measurement of broad temperature ranges, in which the absolute sensitivity was optimized. The influence of this multiwavelength fluorescence intensity ratio nanothermometry on the relative temperature sensitivity was also discussed. A proof of concept of the proposed method was done using Er3+-doped Y2O3 nanocrystals as nanoprobes. The obtained results suggested that, with a suitable choice of nanophosphors, optical nanothermometers with high and flat absolute sensitivities in a wide range of temperatures can be tailored using the proposed methodology.
机译:研究了使用稀土掺杂纳米材料的多个波长排放的光学,纳米热测定法,基于比例技术。 提出了一种方法,基于与不同对热耦合的STARK Sublevels相关的发光。 这种新方法使得能够测量宽温度范围,其中优化绝对灵敏度。 还讨论了这种多波长荧光强度比纳米热测定法对相对温度敏感性的影响。 使用ER3 + - 掺杂的Y2O3纳米晶体作为纳米体,所提出的方法的概念证据。 所得的结果表明,通过合适的纳米膦选择,可以使用所提出的方法来定制具有高且扁平的绝对敏感性的光学纳米温度计,可以使用所提出的方法来定制。

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