Visible and near-infrared luminescent properties of Pr3+/Yb3+ co-doped lanthanum ortho-niobate phosphors
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A. Sombra | A. Sales | M. X. Façanha | H. Andrade | J. P. D. Nascimento | I. S. Q. Júnior | J. E. V. Morais | F. F. Carmo
[1] Yongcheng Zhang,et al. Efficient upconversion photoluminescence in transparent Pr3+/Yb3+ co-doped 0.75Pb(Mg1/3Nb2/3)O3–0.25PbTiO3 ferroelectric ceramics , 2019, Ceramics International.
[2] A. Sarkar,et al. Multicolour tuning and perfect white emission from novel PbWO4:Yb3+:Ho3+:Tm3+ nanophosphor , 2019, Materials Research Bulletin.
[3] A. Gouveia-Neto,et al. White light upconversion emission and color tunability in Er3+/Tm3+/Yb3+ tri-doped YNbO4 phosphor , 2018, Journal of Luminescence.
[4] A. Gouveia-Neto,et al. A novel white-light emitting BaBi2Nb2O9: Li+/Tm3+/Er3+/Yb3+ upconversion phosphor , 2018, Journal of Luminescence.
[5] V. K. Rai,et al. Ho3+-Yb3+:YMoO4 core@shell nanoparticles for enhanced visible upconversion and security applications , 2018, Journal of Alloys and Compounds.
[6] C. P. Joshi,et al. NIR emitting phosphors based on PbMoO 4 for modification of solar spectrum , 2018 .
[7] F. Song,et al. Color-tunable emission by adjusting sensitizer (Yb 3+ ) and excitation power of 980 nm in NaGdTiO 4 :Yb 3+ /Tm 3+ /Er 3+ phosphors for light emitting diodes , 2018 .
[8] S. C. Sharma,et al. Versatile core–shell SiO2@SrTiO3:Eu3+, Li+ nanopowders as fluorescent label for the visualization of latent fingerprints and anti-counterfeiting applications , 2017 .
[9] H. Nagabhushana,et al. Novel and highly efficient red luminescent sensor based SiO 2 @Y 2 O 3 :Eu 3+ , M + (M + = Li, Na, K) composite core–shell fluorescent markers for latent fingerprint recognition, security ink and solid state lightning applications , 2017 .
[10] G. Zhu,et al. Up-conversion photoluminescence emissions of CaMoO 4 :Pr 3+ /Yb 3+ powder , 2017 .
[11] Ilmo Sildos,et al. Approaches to contactless optical thermometer in the NIR spectral range based on Nd3+ doped crystalline nanoparticles , 2017 .
[12] S. Rai,et al. Role of Gd3+ ion on downshifting and upconversion emission properties of Pr3+, Yb3+ co-doped YNbO4 phosphor and sensitization effect of Bi3+ ion , 2016 .
[13] V. Naresh,et al. Influence of multiphonon and cross relaxations on 3P0 and 1D2 emission levels of Pr3+ doped borosilicate glasses for broad band signal amplification , 2016 .
[14] K. Kim,et al. Upconversion luminescence of Ho3+/Tm3+/Yb3+ tri-doped NaLa(MoO4)2 phosphors , 2015 .
[15] R. K. Verma,et al. Infrared to infrared upconversion emission in Pr(3+)/Yb(3+) co-doped La2O3 and La(OH)3 nano-phosphors: a comparative study. , 2015, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[16] Xintong Zhang,et al. Enhanced upconversion luminescence induced by structrual evolution of lanthanum niobate phosphor , 2015 .
[17] V. K. Rai,et al. Pr3+–Yb3+ codoped Y2O3 phosphor for display devices , 2014 .
[18] S. Lis,et al. Luminescence properties of calcium tungstate activated by lanthanide(III) ions , 2014 .
[19] Wei Feng,et al. Recent advances in the optimization and functionalization of upconversion nanomaterials for in vivo bioapplications , 2013 .
[20] Bing Xue,et al. White upconversion emission in Li+/Yb3+/Tm3+/Er3+-doped Gd6MoO12 phosphors , 2013 .
[21] Dongmei Yang,et al. Hollow structured upconversion luminescent NaYF₄:Yb³⁺, Er³⁺ nanospheres for cell imaging and targeted anti-cancer drug delivery. , 2013, Biomaterials.
[22] B. K. Gupta,et al. Probing a highly efficient dual mode: down-upconversion luminescence and temperature sensing performance of rare-earth oxide phosphors. , 2013, Dalton transactions.
[23] Wei Huang,et al. Enhancing solar cell efficiency: the search for luminescent materials as spectral converters. , 2013, Chemical Society reviews.
[24] F. Song,et al. Spectroscopic study and green upconversion of Pr3+/Yb3+-codoped NaY(WO4)2 crystal , 2013 .
[25] Alessandro Chiasera,et al. Pr3 +–Yb3 +‐codoped lanthanum fluorozirconate glasses and waveguides for visible laser emission , 2012 .
[26] C. Joshi,et al. Structural, thermal, and optical properties of Pr3+/Yb3+ co-doped oxyhalide tellurite glasses and its nano-crystalline parts , 2012 .
[27] Xiaoyong Huang,et al. Efficient down- and up-conversion of Pr3+–Yb3+ co-doped transparent oxyfluoride glass ceramics , 2012 .
[28] Liya Zhou,et al. Promising red phosphors LaNbO4:Eu3+, Bi3+ for LED solid-state lighting application , 2010 .
[29] J. Chen,et al. Synthesis and spectral property of Pr3+-doped tungstate deep red phosphors , 2010 .
[30] N. Rakov,et al. The influence of Yb3+ doping on the upconversion luminescence of Pr3+ in aluminum oxide based powders prepared by combustion synthesis , 2009 .
[31] A. Speghini,et al. Cross-Relaxation and Upconversion Processes in Pr3+ Singly Doped and Pr3+/Yb3+ Codoped Nanocrystalline Gd3Ga5O12: The Sensitizer/Activator Relationship , 2008 .
[32] E. Pun,et al. Energy transfer in Pr3+/Yb3+ codoped tellurite glasses , 2007 .
[33] M. Dragoman,et al. Optical Characterization of Solids , 2001 .
[34] Markus P. Hehlen,et al. Power dependence of upconversion luminescence in lanthanide and transition-metal-ion systems , 2000 .
[35] A. Meijerink,et al. Non-radiative relaxation processes of the Pr3+ ion in solids , 1995 .