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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >NIR-NIR photon avalanche based luminescent thermometry with Nd3+ doped nanoparticles
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NIR-NIR photon avalanche based luminescent thermometry with Nd3+ doped nanoparticles

机译:基于ND3 +掺杂纳米颗粒的NIR-NIR光子雪崩基于ND3 +掺杂纳米颗粒

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摘要

The recent advances in remote luminescent thermometry give promise for numerous important biomedical applications including temperature T mapping with sub-micrometer spatial resolution and real time kinetics studies within single cells. The ongoing challenge is to find luminophores, which exhibit many exorbitant parameters in a single luminescent nanoparticle, for example, high (e.g. S-R 2% per K) temperature sensitivities in the physiological temperature range, high luminescence brightness in the NIR spectral region, simplicity and reliability of T readout and mapping. Here, we show an unprecedented approach to luminescent T sensing, which relies on highly temperature dependent non-resonant 1064 nm NIR photoexcitation and a 880 nm anti-Stokes avalanche-like NIR emission from Nd3+ doped nanoparticles. The behavior of NaYF4, Y2O3, YGdO3, YAlO3, Y3Al5O12, LiLaP4O12, Gd2O3 materials and rate-equation modeling suggest that this photon-avalanche phenomenon offers extraordinary features, such as S-R 4% per K at 300-350 K, high brightness in the NIR region and a double mode, intensity or time-resolved based T readout.
机译:远程发光温度的最新进步使得许多重要的生物医学应用包括具有亚微米空间分辨率的温度T映射和单细胞内的实时动力学研究。持续的挑战是寻找发光小团,其在单个发光纳米粒子中表现出许多过高的参数,例如,生理温度范围内的高(例如Sr> 2%/ k)温度敏感性,NIR光谱区域的高发光亮度, T读出和映射的简单性和可靠性。在这里,我们展示了前所未有的发光T感测的方法,其依赖于高温依赖性的非共振1064nm Nir运动透射率和880nm的抗刺激雪崩纳米胺发射来自Nd3 +掺杂纳米颗粒。 NayF4,Y2O3,YGDO3,YALO3,Y3AL5O12,LILAP4O12,GD2O3材料和速率方程模型的行为表明,这种Photon-Avalanche现象提供了非凡的特征,例如S-R>;每个k以300-350 k,NIR区域的高亮度和基于双模式,强度或时间分辨的T读出的4%。

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