发光学报, 2017, 38 (8): 995, 网络出版: 2017-08-30   

Eu3+离子激活荧光粉Ca1.9Eu0.1NaMg2-xZnx(VO4)3(0≤x≤1)的发光性质

Photoluminescence Properties of Eu3+-activated Ca1.9Eu0.1NaMg2-xZnx(VO4)3(0≤x≤1.0) Phosphor
作者单位
硅酸盐建筑材料国家重点实验室 武汉理工大学, 湖北 武汉430070
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阮威威, 刘志国, 刘成振, 阮健, 韩建军, 赵修建. Eu3+离子激活荧光粉Ca1.9Eu0.1NaMg2-xZnx(VO4)3(0≤x≤1)的发光性质[J]. 发光学报, 2017, 38(8): 995.

RUAN Wei-wei, LIU Zhi-guo, LIU Cheng-zhen, RUAN Jian, HAN Jian-jun, ZHAO Xiu-jian. Photoluminescence Properties of Eu3+-activated Ca1.9Eu0.1NaMg2-xZnx(VO4)3(0≤x≤1.0) Phosphor[J]. Chinese Journal of Luminescence, 2017, 38(8): 995.

参考文献

[1] KRAMES M R, SHCHEKIN O B, MUELLER-MACH R. Status and future of high-power light-emitting diodes for solid-state lighting [J]. J. Dis. Technol., 2007, 3(2):160-175.

[2] 周青超, 柏泽龙, 鲁路, 等. 白光LED远程荧光粉技术研究进展与展望 [J]. 中国光学, 2015, 8(3):313-328.

    ZHOU Q C, BAI Z L,LU L, et al.. Remote phosphor technology for white LED applications: advances and prospects [J]. Chin. Opt., 2015, 8(3):313-328. (in Chinese)

[3] MCKITTRICK J, SHEA-ROHWER L E. Review: down conversion materials for solid-state lighting [J]. J. Am. Ceram. Soc., 2014, 97(5):1327-1352.

[4] LIN C C, LIU R S. Advances in phosphors for light-emitting diodes [J]. J. Phys. Chem. Lett., 2011, 2(11):1268-1277.

[5] JANSEN T, JSTEL T, KIRM M, et al.. Site selective, time and temperature dependent spectroscopy of Eu3+ doped apatites (Mg,Ca,Sr)2Y8Si6O26 [J]. J. Lumin., 2017, 186:205-211.

[6] XIE R J, HIROSAKI N, SUEHIRO T, et al.. A simple, efficient synthetic route to Sr2Si5N8∶Eu2+-based red phosphors for white light-emitting diodes [J]. Chem. Mater., 2006, 18(23):5578-5583.

[7] GRIGORJEVAITE J, KATELNIKOVAS A. Luminescence and luminescence quenching of K2Bi(PO4)(MoO4)∶Eu3+ phosphors with efficiencies close to unity [J]. ACS Appl. Mater. Interf., 2016, 8(46):31772-31782.

[8] SEIBALD M, ROSENTHAL T, OECKLER O, et al.. New polymorph of the highly efficient LED-phosphor SrSi2O2N2∶Eu2+-polytypism of a layered oxonitridosilicate [J]. Chem. Mater., 2013, 25(9):1852-1857.

[9] 王迪, 孟祥雨, 赵嘉伟, 等. Ca9Al(PO4)7∶Eu2+的发光、浓度猝灭及温度稳定性 [J]. 光子学报, 2015, 44(5):0516002.

    WANG D, MENG X Y, ZHAO J W, et al.. Luminescence, concentration quenching and thermal stability of Ca9Al(PO4)7∶Eu2+ [J]. Acta Photon. Sinica, 2015, 44(5):0516002. (in Chinese)

[10] 杨志平, 梁晓双, 赵引红, 等. 橙红色荧光粉Ca3Y2(Si3O9)2∶Sm3+的制备及发光性能的表征 [J]. 光子学报, 2014, 43(3):0316002.

    YANG Z P, LIANG X S, ZHAO Y H, et al.. Preparation and luminescence properties of reddish-orange phosphors Ca3Y2(Si3O9)2∶ Sm3+ [J]. Acta Photon. Sinica, 2014, 43(3):0316002. (in Chinese)

[11] 曹帅. 碱土七钒酸盐发光材料的制备及发光性质研究 [D]. 合肥:安徽大学, 2010.

    CAO S. The Synthesize and Performance Study of Alkaline Earth Metal Seven Vanadates Luminescent Materials [D]. Hefei: Anhui University, 2010. (in Chinese)

[12] 刘昊, 阮健, 韩建军, 等. 绿色钒酸盐荧光粉Ca5Mg4(VO4)6的制备和发光性能 [J]. 硅酸盐学报, 2013, 41(3):334-341.

    LIU H, RUAN J, HAN J J, et al.. Preparation and photoluminescence properties of green-emitting vanadate phosphor Ca5Mg4(VO4)6 [J]. J. Chin. Ceram. Soc., 2013, 41(3):334-341. (in Chinese)

[13] MATSUSHIMA Y, KOIDE T, HIRO-OKA M, et al.. Self-activated vanadate compounds toward realization of rare-earth-free full-color phosphors [J]. J. Amer. Ceram. Soc., 2015, 98(4):1236-1244.

[14] SHIRAISHI Y, TAKESHITA S, ISOBE T. Two photoenergy conversion modes of YVO4∶Eu3+ nanoparticles: photoluminescence and photocatalytic activity [J]. J. Phys. Chem. C, 2015, 119(24):13502-13508.

[15] SETLUR A A, COMANZO H A, SRIVASTAVA A M, et al.. Spectroscopic evaluation of a white light phosphor for UV-LEDs-Ca2NaMg2V3O12∶Eu3+ [J]. J. Electrochem. Soc., 2005, 152(12):H205-H208.

[16] 许静, 傅亚, 原金海, 等. Ba3V2O8∶Eu3+纳米花的制备及光致发光性能研究 [J]. 功能材料, 2012, 43(18):2564-2567.

    XU J, FU Y, YUAN J H, et al.. Synthesis and photoluminescence property of Ba3V2O8∶Eu3+ nanoflowers [J]. J. Funct. Mater., 2012, 43(18):2564-2567. (in Chinese)

[17] DHOBALE A R, MOHAPATRA M, NATARAJAN V, et al.. Synthesis and photoluminescence investigations of the white light emitting phosphor, vanadate garnet, Ca2NaMg2V3O12 co-doped with Dy and Sm [J]. J. Lumin., 2012, 132(2):293-298.

[18] CHEN X, XIA Z G, YI M, et al.. Rare-earth free self-activated and rare-earth activated Ca2NaZn2V3O12 vanadate phosphors and their color-tunable luminescence properties [J]. J. Phys. Chem. Solids, 2013, 74(10):1439-1443.

[19] XIE H D, TSUBOI T, HUANG W. Luminescence and quantum efficiencies of Eu3+-doped vanadate garnets [J]. J. Am. Ceram. Soc., 2014, 97(5):1434-1441.

[20] SHANNON R D. Revised effective ionic radii and systematic studies of interatomic distances in halides and chalcogenides [J]. Acta Crystallog. A, 1976, 32(5):751-767.

[21] 刘志国, 刘成振, 阮健, 等. 自激活荧光粉Ca2NaMg2-xZnx(VO4)3(0≤x≤1.2)的发光性质 [J]. 武汉理工大学学报, 2016, 38(1):7-12.

    LIU Z G, LIU C Z, RUAN J, et al.. Photoluminescence properties of self-activated Ca2NaMg2-xZnx(VO4)3(0≤x≤1.2) phosphor [J]. J. Wuhan Univ. Technol., 2016, 38(1):7-12. (in Chinese)

[22] KRAUS W, NOLZE G. Powder Cell for Windows (version 2.3) [M]. Berlin: Federal Institute for Materials Research and Testing, 1999.

[23] KRAUS W, NOLZE G. Powder cell—a program for the representation and manipulation of crystal structures and calculation of the resulting X-ray powder patterns [J]. J. Appl. Crystallog., 1996, 29(3):301-303.

[24] LI L P, LI G S, XUE Y F, et al.. Structure, luminescence, and transport properties of EuVO4[J]. J. Electrochem. Soc., 2001, 148(9):J45-J49.

[25] NAKAJIMA T, ISOBE M, TSUCHIYA T, et al.. A revisit of photoluminescence property for vanadate oxides AVO3(A: K, Rb and Cs) and M3V2O8 (M∶Mg and Zn) [J]. J. Lumin., 2009, 129(12):1598-1601.

[26] RONDE H, BLASSE G. The nature of the electronic transitions of the vanadate group [J]. J. Inorg. Nucl. Chem., 1978, 40(2):215-219.

[27] HSU C, POWELL R C. Energy transfer in europium doped yttrium vanadate crystals [J]. J. Lumin., 1975, 10(5):273-293.

[28] YAMAMOTO H, SEKI S, JESER J P, et al.. Thermal quenching of luminescence in a disordered compound∶EuNa2Mg2(VO4)3 [J]. J. Electrochem. Soc., 1980, 127(3):694-701.

[29] WANG D F, TANG J W, ZOU Z G, et al.. Photophysical and photocatalytic properties of a new series of visible-light-driven photocatalysts M3V2O8 (M=Mg, Ni, Zn) [J]. Chem. Mater., 2005, 17(20):5177-5182.

阮威威, 刘志国, 刘成振, 阮健, 韩建军, 赵修建. Eu3+离子激活荧光粉Ca1.9Eu0.1NaMg2-xZnx(VO4)3(0≤x≤1)的发光性质[J]. 发光学报, 2017, 38(8): 995. RUAN Wei-wei, LIU Zhi-guo, LIU Cheng-zhen, RUAN Jian, HAN Jian-jun, ZHAO Xiu-jian. Photoluminescence Properties of Eu3+-activated Ca1.9Eu0.1NaMg2-xZnx(VO4)3(0≤x≤1.0) Phosphor[J]. Chinese Journal of Luminescence, 2017, 38(8): 995.

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