Temperature sensing using a Cr:ZnGa2O4 new phosphor

被引:11
作者
Sharma, S. K. [1 ]
Glais, E. [1 ,2 ]
Pellerin, M. [1 ,2 ]
Chaneac, C. [2 ]
Viana, B. [1 ]
机构
[1] PSL Res Univ, IRCP, Chim ParisTech, CNRS, 11 Rue P&M Curie, F-75231 Paris 05, France
[2] Univ Paris 06, Sorbonne Univ, CNRS, Coll France,Lab Chim Mat Condensee Paris, 11 Pl Marcelin Berthelot, F-75005 Paris, France
来源
OXIDE-BASED MATERIALS AND DEVICES VII | 2016年 / 9749卷
关键词
Temperature sensor; Cr3+; ZnGa2O4; lifetimes; emission profiles; BULK GLASS-CERAMICS; OPTICAL SPECTROSCOPY; NANOPARTICLES; THERMOMETRY;
D O I
10.1117/12.2219990
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
The luminescence emission of a thermographic phosphor based on trivalent chromium doped ZGO (ZnGa2O4) bulk as well as nanoparticles is here reported. This material has a strong temperature dependence on the optical features such as ratio of their emission bands, bandwidths, bands position as well as the lifetime decay of the Cr3+. This makes this material well suitable as temperature sensor. ZnGa2O4 (ZGO), a normal spinel, exhibits a high brightness persistent luminescence, when doped with Cr3+ ions and shows an emission spectrum centered at 695 nm. At the nanometric scale, ZGO is used for in vivo imaging with a better signal to background ratio than classical fluorescent NIR probes. In this work we investigate the ability of the host to be a new thermographic phosphor. Several optical features are investigated in a broad temperature range (10 K-700 K). A comparison between bulk material and nanoparticles is introduced. The obtained results could be used to determine the optimal design parameters for sensor development.
引用
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页数:7
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共 27 条
  • [1] ZnGa2O4:Cr3+: a new red long-lasting phosphor with high brightness
    Bessiere, Aurelie
    Jacquart, Sylvaine
    Priolkar, Kaustubh
    Lecointre, Aurelie
    Viana, Bruno
    Gourier, Didier
    [J]. OPTICS EXPRESS, 2011, 19 (11): : 10131 - 10137
  • [2] Lanthanide energy levels in YPO4
    Bos, Adrie J. J.
    Dorenbos, Pieter
    Bessiere, Aurelie
    Viana, Bruno
    [J]. RADIATION MEASUREMENTS, 2008, 43 (2-6) : 222 - 226
  • [3] A Luminescent Molecular Thermometer for Long-Term Absolute Temperature Measurements at the Nanoscale
    Brites, Carlos D. S.
    Lima, Patricia P.
    Silva, Nuno J. O.
    Millan, Angel
    Amaral, Vitor S.
    Palacio, Fernando
    Carlos, Luis D.
    [J]. ADVANCED MATERIALS, 2010, 22 (40) : 4499 - 4504
  • [4] Cr3+-doped gallium-based transparent bulk glass ceramics for optical temperature sensing
    Chen, Daqin
    Wan, Zhongyi
    Zhou, Yang
    Ji, Zhenguo
    [J]. JOURNAL OF THE EUROPEAN CERAMIC SOCIETY, 2015, 35 (15) : 4211 - 4216
  • [5] Optical spectroscopy of Cr3+-doped transparent nano-glass ceramics for lifetime-based temperature sensing
    Chen, Daqin
    Wan, Zhongyi
    Zhou, Yang
    [J]. OPTICS LETTERS, 2015, 40 (15) : 3607 - 3610
  • [6] Bulk glass ceramics containing Yb3+/Er3+:β-NaGdF4 nanocrystals: Phase-separation-controlled crystallization, optical spectroscopy and upconverted temperature sensing behavior
    Chen, Daqin
    Wan, Zhongyi
    Zhou, Yan
    Huang, Ping
    Zhong, Jiasong
    Ding, Mingye
    Xiang, Weidong
    Liang, Xiaojuan
    Ji, Zhenguo
    [J]. JOURNAL OF ALLOYS AND COMPOUNDS, 2015, 638 : 21 - 28
  • [7] Non-contact thermometry with Dy3+ doped Gd2Ti2O7 nano-powders
    Culubrk, Sanja
    Lojpur, Vesna
    Ahrenkiel, Scott P.
    Nedejkovic, Jovan M.
    Dramicanin, Miroslav D.
    [J]. JOURNAL OF LUMINESCENCE, 2016, 170 : 395 - 400
  • [8] Evidence of ferromagnetically coupled Nd3+ ion pairs in weakly doped Nd:LiYF4 and Nd:YVO4 crystals as revealed by high-resolution optical and EPR spectroscopies
    Guillot-Noël, O
    Mehta, V
    Viana, B
    Gourier, D
    Boukhris, M
    Jandl, S
    [J]. PHYSICAL REVIEW B, 2000, 61 (22) : 15338 - 15346
  • [9] Spectroscopic Studies of Polycrystalline NaAl(MoO4)2:Cr3+ Compound as New Material for Micro- and Nano-Sized Cryogenic Fluorescence Thermometer
    Hizhnyi, Yu
    Nedilko, S.
    Chornii, V.
    Nagornyi, P.
    Boiko, R.
    Slobodyanik, M.
    Terebilenko, K.
    [J]. SENSOR LETTERS, 2010, 8 (03) : 425 - 430
  • [10] Luminescence nanothermometry
    Jaque, Daniel
    Vetrone, Fiorenzo
    [J]. NANOSCALE, 2012, 4 (15) : 4301 - 4326