Er3+/Yb3+ codoped zincate BaGd2ZnO5 phosphors were synthesized via a traditional solid state reaction. The crystal struc-ture and phase purity were checked by means of X-ray diffraction (XRD), and the results showed that pure phase BaGd2ZnO5 phos-phors with various Er3+, Yb3+ concentrations were obtained. The influence of Er3+ and Yb3+ doping concentrations on the green and red upconversion emissions was studied. It was found that both green and red upconversion emissions under 980 nm excitation were two-photon processes independent from the rare earth doping concentrations. However, the upconversion luminescence intensities greatly depended on the rare earth doping concentration. Furthermore, the population processes of upconversion luminescence and the quenching mechanisms were analyzed. The temperature-dependent green upconversion luminescence was studied, and the tempera-ture quenching process of two green upconversion emissions was modeled. The thermal quenching processes of the green upconver-sion emissions could be well explained by the model we proposed.
参考文献
[1] | Frangois Auzel .Upconversion and Anti-Stokes Processes with f and d Ions in Solids[J].Chemical Reviews,2004(1):139-173. |
[2] | Huang F F;Liu X Q;Hu L L;Chen D P .Spectroscopic properties and energy transfer parameters of Er3+-doped fluorozirconate and oxyfluoroaluminate glasses[J].Sci Rep-UK,2014,4:5053. |
[3] | Franciszek K;Jerzy Karolczak .Infrared-to-visible upcon-version:spontaneous emission and amplified spontaneous emission in a ZBLAN:Er3+ optical fiber[J].OPTICA APPLICATA,2007,37(1-2):101. |
[4] | Octavian T .Emission regimes of a green Er:YLiF4 laser[J].Journal of Quantum Electronics,2007,43(7-8):519. |
[5] | Macdougall S K W;Aruna I;Jose M H;Karl W K Bryce S R .Broadband photoluminescent quantum yield optimi-zation of Er3+ doped beta-NaYF4 for upconversion in sili-con solar cells[J].Solar Energy Materials and Solar Cells,2014,128:18. |
[6] | Chen D Q;Huang P .Highly intense upconversion lumi-nescence in Yb/Er:NaGdF4@NaYF4 core-shell nanocrys-tals with complete shell enclosure of the core[J].DALTON TRANSACTIONS,2014,43:11299. |
[7] | Zeng,S.;Wang,H.;Lu,W.;Yi,Z.;Rao,L.;Liu,H.;Hao,J. .Dual-modal upconversion fluorescent/X-ray imaging using ligand-free hexagonal phase NaLuF4: Gd/Yb/Er nanorods for blood vessel visualization[J].Biomaterials,2014(9):2934-2941. |
[8] | Chen D Q;Chen Y;Lu H W;Ji Z G .A bifunctional Cr/Yb/Tm:Ca3Ga2Ge3O12 phosphor with near-infrared long-lasting phosphorescence and upconversion luminescence[J].Inorganic Chemistry,2014,53:8638. |
[9] | Sun Y;Zhu X J;Peng J J;Li F Y .Core-shell lanthanide upconversion nanophosphors as four-modal probes for tumor angiohenesis imaging[J].ACS Nano,2013,7(12):11290. |
[10] | Liu, Q.;Feng, W.;Yang, T.;Yi, T.;Li, F. .Upconversion luminescence imaging of cells and small animals[J].Nature protocols erecipes for researchers,2013(10):2033-2044. |
[11] | Jing Wang;Hongwei Song;Wen Xu .Phase transition, size control and color tuning of NaREF4:Yb~(3+), Er~(3+) (RE = Y, Lu) nanocrystals[J].Nanoscale,2013(8):3412-3420. |
[12] | Etchart I;Hernandez I;Huignard A;Berard M Gilin W P Curry R J Cheetham A K .Efficient oxide phosphors for light upconversion;green emission from Yb3+ and Ho3+ codoped Ln2BaZnO5(Ln=Y,Gd)[J].Journal of Materials Chemistry,2011,21(5):1387. |
[13] | Etchart I;Huignard A;Berard M;Nordin M N Hernandez I Curry R J Gillin W P Cheetham A K .Oxide phosphors for efficient light upconversion:Yb3+ and Er3+ co-doped Ln2BaZnO5(Ln=Y,Gd),J[J].MATERIALS CHEMISTRY,2010,20(19):3989. |
[14] | Yang Y M;Jiao F Y;Zhang W;Jiao J P Li Z Q Su X Y Wen N .Unique ultraviolet upconversion emissions of BaGd2ZnO5:Yb3+,Pr3+,J[J].Alloys and Compounds,2013,567:107. |
[15] | Yang Y M;Mi C;Su X Y;Jiao F Y Liu L L Zhang J Yu F Li X D Liu Y Z Mai Y H .Ultraviolet C upconversion fluorescence of trivalent erbium in BaGd2ZnO5 phosphor excited by a visible commercial ligh-emitting diode[J].Optics Letters,2014,39(7):2000. |
[16] | Huang-Yu Chen;Ru-Yuan Yang;Shoou-Jinn Chang .Improving crystalline morphology and photoluminescent properties of BaY_2ZnO_5: Eu~(3+) phosphors prepared using microwave assisted sintering[J].Materials Letters,2010(22):2548-2550. |
[17] | Sonika Singh;S. P. Khatkar;V. B. Taxak .Luminescence and structural properties of Eu~(3+) doped BaY_2ZnO_5 for LED solid-state lighting application[J].Journal of Materials Science. Materials in Electronics,2013(12):4677-4683. |
[18] | Yang, H.K.;Park, J.M.;Moon, B.K.;Choi, B.C.;Jeong, J.H.;Kim, J.H.;Jang, K.;Kim, K.H. .Synthesis and photoluminescence characteristics of BaY_2ZnO_5:Eu~(3+) phosphors fabricated by using both high-energy ball milling and a solid-state reaction[J].Journal of the Korean Physical Society,2012(12):2011-2016. |
[19] | Chen, H.-Y.;Yang, R.-Y.;Chang, S.-J. .Different alkali carbonates on the microstructure and photoluminescence properties of BaY_2ZnO_5:Tb~(3+) phosphors prepared using the solid-state method[J].The journal of physics and chemistry of solids,2013(2):344-347. |
[20] | Chih-Hao Liang;Yee-Cheng Chang;Yee-Shin Chang .Synthesis and photoluminescence characteristics of color-tunable BaY_(2)ZnO_(5):Eu~(3+) phosphors[J].Applied physics letters,2008(21):211902-1-211902-3-0. |
[21] | Yang Y M;Liu L L;Cai S Z;Jiao F Y Mi C Su X Y Zhang J Yu F Li X D Li Z Q .Upconversion lumines-cence and near-infrared quantum cutting in Dy3+,Yb3+ co-doped BaGd2ZnO5 nanocrystal[J].Journal of Luminescence,2014,146:284. |
[22] | F.P. Wenzl,P. Fulmek,C. Sommer,S. Schweitzer,W. Nemitz,P. Hartmann,P. Pachler,H. Hoschopf,F. Schrank,G. Langer,J. Nicolics.Impact of extinction coefficient of phosphor on thermal load of color conversion elements of phosphor converted LEDs[J].稀土学报(英文版),2014(03):201-206. |
[23] | Tian B N;Chen B J;Tian Y;Li X P Zhang J S Sun J S Zhong H Cheng L H Fu S B Zhong H Y Wang Y Zhang X Xia H Hua R N .Excitation pathway and tem-perature dependent luminescence in color tunable Ba5Gd8Zn4O21:Eu3+ phosphors[J].J Mater Chem C,2013,1:2338. |
[24] | Vetrone F;Boyer J C;Capobianco J A;Speghini A Betti-nelli M .Effect of Yb3+ codoping on the upconversion emission in nanocrystalline Y2O3:Er3+[J].Journal of Physical Chemistry B,2003,107(5):1107. |
[25] | Zhao J;Hua R;Zhang W;Feng Z Tang D Na L Chen B .Preparation and up-conversion luminescence of SrAlF5:Yb3+/Er3+ nanorods[J].Journal of Alloys and Compounds,2014,588:519. |
[26] | Qipeng Lu;Yanbing Hou;Aiwei Tang;Yunzhang Lu;Longfeng Lv;Feng Teng .Controlled synthesis and defect dependent upconversion luminescence of Y_2O_3: Yb, Er nanoparticles[J].Journal of Applied Physics,2014(7):074309-1-074309-4. |
[27] | Haibo Wang;Wei Lu;Tianmei Zeng .Multi-functional NaErF4:Yb nanorods: enhanced red upconversion emission, in vitro cell, in vivo X-ray, and T2-weighted magnetic resonance imaging[J].Nanoscale,2014(5):2855-2860. |
[28] | Wei Y L;Li X M;Guo H .Enhanced upconversion in novel KLu2F7:Er3+ transparent oxyfluoride glass-ceramics[J].Opt Mater Express,2014,4(7):1367. |
[29] | Haiqin SunA;Qiwei Zhang;Xusheng WangA .Green and red upconversion luminescence of Er~(3+)-doped K_(0.5)Na_(0.5)NbO_3 ceramics[J].CERAMICS INTERNATIONAL,2014(2):2581-2584. |
[30] | Wensheng Yu;Qingling Kong;Jinxian Wang;Xiangting Dong;Guixia Liu .Fabrication of Er~(3+)-doped LaOCl nanostructures with upconversion and near-infrared luminescence performances[J].Journal of Materials Science. Materials in Electronics,2014(1):46-56. |
[31] | LUO Xianjia,Ryosuke Yuminami,Takeaki Sakurai,Katsuhiro Akimoto.A novel synthesis method and up-conversion properties of hexagonal-phase NaYF4∶Er nano-crystals[J].稀土学报(英文版),2013(03):267-270. |
[32] | Yue Tian;Baojiu Chen;Ruinian Hua;Jiashi Sun;Lihong Cheng;Haiyang Zhong;Xiangping Li;Jinsu Zhang;Yanfeng Zheng;Tingting Yu;Libo Huang;Hongquan Yu .Optical transition, electron-phonon coupling and fluorescent quenching of La_(2)(MoO_(4))_(3):Eu~(3+) phosphor[J].Journal of Applied Physics,2011(5):053511-1-053511-6. |
[33] | S.Hraiech,M.Ferid,Y.Guyot,G.Boulon.Structural and optical studies of Yb3+, Er3+ and Er3+/Yb3+ co-doped phosphate glasses[J].稀土学报(英文版),2013(07):685-693. |
[34] | Dong, B.;Cao, B.S.;Feng, Z.Q.;Wang, X.J.;He, Y.Y. .Optical temperature sensing through extraordinary enhancement of green up-conversion emissions for Er-Yb-Mo:Al _2O _3[J].Sensors and Actuators, B. Chemical,2012(1):34-37. |
[35] | Xiang S Y;Chen B J;Zhang J S;Li X P Sun J S Zheng H Wu Z L Zhong H Yu H Q Xia H P .Microwave-assisted hydrothermal synthesis and laser-induced optical heating effect of NaY(WO4)2:Tm3+/Yb3+ microstructures[J].Opt Mater Express,2014,4(9):1966. |
[36] | Dong B;Liu D P;Wang X J;Yang T Miao S M Li C R .Optical thermometry through infrared excited green up-conversion emissions in Er3+-Yb3+ codoped Al2O3[J].Applied Physics Letters,2007,90:181117. |
- 下载量()
- 访问量()
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%