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基于NaGdF:Yb:Er@SiO-Eu(tta)的紫外线和温度传感

UV and Temperature-Sensing Based on NaGdF:Yb:Er@SiO-Eu(tta).

作者信息

Nigoghossian Karina, Messaddeq Younès, Boudreau Denis, Ribeiro Sidney J L

机构信息

Laboratory of Photonic Materials, Institute of Chemistry, São Paulo State University, UNESP, CP 355, Araraquara, São Paulo 14801-970 Brazil.

Centre d'optique, photonique et laser and Department of Chemistry, Université Laval, Québec, Québec G1V 0A6, Canada.

出版信息

ACS Omega. 2017 May 15;2(5):2065-2071. doi: 10.1021/acsomega.7b00056. eCollection 2017 May 31.

Abstract

A multifunctional nanosystem was synthesized to be used as a dual sensor of UV light and temperature. NaGdF:Yb:Er upconverting nanoparticles (UCNPs) were synthesized and coated with a silica shell to which a europium(III) complex was incorporated. The synthesis of NaGdF UCNPs was performed via thermal decomposition of lanthanide ion fluoride precursors in the presence of oleic acid. To achieve sufficient water dispersibility, the surface of the hydrophobic oleate-capped UCNPs in the hexagonal phase was modified by a silica coating through a modified Stöber process through a reverse microemulsion method. An Eu(tta) (tta: thenoyltrifluoroacetonate) complex was prepared in situ at the silica shell. A dual-mode nanothermometer was obtained from a near infrared to visible upconversion fluorescence signal of Er ions together with UV-excited downshifting emission from the Eu complex. Measurements were recorded near the physiological temperature range (293-323 K), revealing excellent linearity ( > 0.99) and relatively high thermal sensitivities (≥1.5%·K). The Eu(tta) complex present in the silica shell was tested as the UV sensor because of the Eu luminescence dependence on UV-light exposure time.

摘要

合成了一种多功能纳米系统,用作紫外线和温度的双传感器。合成了NaGdF:Yb:Er上转换纳米粒子(UCNPs),并用二氧化硅壳包覆,其中掺入了铕(III)配合物。NaGdF UCNPs的合成是通过在油酸存在下镧系离子氟化物前驱体的热分解进行的。为了实现足够的水分散性,通过反相微乳液法,采用改进的斯托伯(Stöber)工艺,用二氧化硅涂层对六方相疏水油酸包覆的UCNPs表面进行改性。在二氧化硅壳原位制备了Eu(tta)(tta:噻吩甲酰三氟丙酮)配合物。通过Er离子从近红外到可见的上转换荧光信号以及Eu配合物的紫外激发下转换发射,获得了一种双模纳米温度计。在生理温度范围(293 - 323 K)附近进行测量,显示出优异的线性度(> 0.99)和相对较高的热灵敏度(≥1.5%·K)。由于Eu发光对紫外线照射时间的依赖性,对存在于二氧化硅壳中的Eu(tta)配合物作为紫外线传感器进行了测试。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a12/6641124/54dcd95c20bb/ao-2017-00056n_0001.jpg

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