Charging Gd3Ga5O12:Pr3+ persistent phosphor using blue lasers
暂无分享,去创建一个
Yichun Liu | Xiaojun Wang | Qingqing Gao | F. Liu | Jiahua Zhang | Xiyu Zhao | Aiying Wang | Siyi Yan
[1] Yichun Liu,et al. Manipulating trap filling of persistent phosphors upon illumination by using a blue light-emitting diode , 2020 .
[2] Yichun Liu,et al. Persistent Emission of Narrowband Ultraviolet-B Light upon Blue-Light Illumination , 2020 .
[3] S. Tanabe,et al. Persistent luminescence instead of phosphorescence: History, mechanism, and perspective , 2019, Journal of Luminescence.
[4] Xiaojun Wang,et al. A new up-conversion charging concept for effectively charging persistent phosphors using low-energy visible-light laser diodes , 2018 .
[5] B. Viana,et al. Toward Rechargeable Persistent Luminescence for the First and Third Biological Windows via Persistent Energy Transfer and Electron Trap Redistribution. , 2018, Inorganic chemistry.
[6] P. Dorenbos,et al. Thermal ionization and thermally activated crossover quenching processes for 5d-4f luminescence in Y3 A l5-x G ax O12: P r3+ , 2017 .
[7] 刘. L. Feng,et al. Effects of Non-4f States on Pr3+ Luminescence in Phosphors , 2017 .
[8] Xia Sun,et al. Near-infrared persistent luminescence hollow mesoporous nanospheres for drug delivery and in vivo renewable imaging. , 2016, Journal of materials chemistry. B.
[9] J. Ueda,et al. Novel persistent phosphors of lanthanide–chromium co-doped yttrium aluminum gallium garnet: design concept with vacuum referred binding energy diagram , 2016 .
[10] V. Semashko. Excited-state absorption spectra of Pr 3+ ions doped into LiY 0.3 Lu 0.7 F 4 mixed crystal , 2016 .
[11] F. Liu,et al. Phonon-assisted upconversion charging in Zn3Ga2GeO8:Cr(3+) near-infrared persistent phosphor. , 2016, Optics letters.
[12] W. Fan,et al. Direct Aqueous-Phase Synthesis of Sub-10 nm “Luminous Pearls” with Enhanced in Vivo Renewable Near-Infrared Persistent Luminescence , 2015, Journal of the American Chemical Society.
[13] Feng Liu,et al. Detection of up-converted persistent luminescence in the near infrared emitted by the Zn₃Ga₂GeO₈:Cr³⁺, Yb³⁺, Er³⁺ phosphor. , 2014, Physical review letters.
[14] Feng Liu,et al. Photostimulable Near-Infrared Persistent Luminescent Nanoprobes for Ultrasensitive and Longitudinal Deep-Tissue Bio-Imaging , 2014, Theranostics.
[15] Yang Li,et al. Long persistent and photo-stimulated luminescence in Cr3+-doped Zn–Ga–Sn–O phosphors for deep and reproducible tissue imaging , 2014 .
[16] Setsuhisa Tanabe,et al. Tunable trap depth in Zn(Ga1−xAlx)2O4:Cr,Bi red persistent phosphors: considerations of high-temperature persistent luminescence and photostimulated persistent luminescence , 2013 .
[17] Jae-Hong Kim,et al. Upconversion under polychromatic excitation: Y2SiO5:Pr3+, Li+ converts violet, cyan, green, and yellow light into UVC , 2013 .
[18] Feng Liu,et al. Photostimulated near-infrared persistent luminescence as a new optical read-out from Cr3+-doped LiGa5O8 , 2013, Scientific Reports.
[19] P. Smet,et al. Revealing trap depth distributions in persistent phosphors , 2013 .
[20] Zhengwei Pan,et al. Sunlight-activated long-persistent luminescence in the near-infrared from Cr(3+)-doped zinc gallogermanates. , 2011, Nature materials.
[21] Jorma Hölsä,et al. Persistent Luminescence Beats the Afterglow: 400 Years of Persistent Luminescence , 2009 .
[22] Reuven Chen,et al. Thermoluminescence of some Pr 3+ doped fluoride crystals , 2008 .
[23] Didier Gourier,et al. Nanoprobes with near-infrared persistent luminescence for in vivo imaging , 2007, Proceedings of the National Academy of Sciences.
[24] D. Evans,et al. UV excitation and trapping centers in CaTiO3:Pr3+ , 2006 .
[25] Changhong Hu,et al. Visible-to-ultraviolet upconversion in Pr3+: Y2SiO5 crystals , 2006 .
[26] E. V. D. Kolk,et al. 5delectron delocalization ofCe3+andPr3+inY2SiO5andLu2SiO5 , 2005 .
[27] Xiao-jun Wang,et al. Measurement of quantum efficiency in Pr3+-doped CaAl4O7 and SrAl4O7 crystals , 2001 .
[28] S. Girard,et al. 4f2 to 4f5d excited state absorption in Pr3+:YAlO3 , 1999 .
[29] Kenneth T. V. Grattan,et al. Temperature dependence of the fluorescence lifetime in Pr3+:ZBLAN glass for fiber optic thermometry , 1997 .
[30] R. Macfarlane,et al. Photon-gated photoconductivity of Pr(3+):YAG. , 1996, Optics letters.
[31] Cheung Ym,et al. Excited-state absorption in Pr3+:Y3Al5O12. , 1994 .
[32] A. Meijerink,et al. The temperature dependence of the luminescence of Gd2O2SPr3+ upon 4f5d excitation , 1989 .
[33] F. K. Fong,et al. Energy transfer upconversion in LaF3:Pr3+ , 1973 .