发光学报, 2018, 39 (7): 930, 网络出版: 2018-08-30  

多孔性氟化物助熔剂制备Eu2+∶(Sr,Ca)AlSiN3红色荧光粉

Synthetic Method and Luminescence Properties of Red-emitting Phosphorus Eu2+∶(Sr,Ca)AlSiN3 Using Porous Fluoride as Flux
作者单位
1 广西师范学院 化学与材料科学学院, 广西 南宁 530001
2 广东怀集中学, 广东 怀集 526400
3 西安鸿宇光电技术有限公司, 陕西 西安 710100
4 北京中村宇极科技有限公司, 北京 100081
引用该论文

陈彩花, 王小军, 蒙丽丽, 张丽霞, 梁利芳, 刘德尧, 张琳, 任守权, 毛建, 王志富, 张辽. 多孔性氟化物助熔剂制备Eu2+∶(Sr,Ca)AlSiN3红色荧光粉[J]. 发光学报, 2018, 39(7): 930.

陈彩花, 王小军, 蒙丽丽, 张丽霞, 梁利芳, 刘德尧, 张琳, 任守权, 毛建, 王志富, 张辽. Synthetic Method and Luminescence Properties of Red-emitting Phosphorus Eu2+∶(Sr,Ca)AlSiN3 Using Porous Fluoride as Flux[J]. Chinese Journal of Luminescence, 2018, 39(7): 930.

参考文献

[1] MA P, YUAN B, SHENG Y, et al.. Tunable emission, thermal stability and energy-transfer properties of SrAl2Si2O8∶Ce3+/Tb3+ phosphors for w-LEDs [J]. J. Alloys Compd., 2017, 714(8):627-635.

[2] 陈彩花, 杨国辉, 梁利芳, 等. 溶胶凝胶法合成CaYAlO4∶Mn4+红色荧光粉及其荧光性能研究 [J]. 发光学报, 2017, 38(5):567-573.

    CHEN C H, YANG G H, LIANG L F, et al.. Luminescent properties of CaYAlO4∶Mn4+ red phosphors prepared by sol-gel method [J]. Chin. J. Lumin., 2017, 38(5):567-573. (in Chinese)

[3] JIN Y, WANG Q P, ZHOU H P, et al.. Luminescence properties and high thermal stability of tunable blue-green-emitting phosphor Gd4.67Si3O13∶Ce3+,Tb3+ [J]. Ceram. Int., 2016, 42(2):3309-3316.

[4] 陈彩花, 陈凯, 蒙丽丽, 等. CaYAlO4∶Ce3+,Tb3+荧光粉的发光性能及Ce3+→Tb3+的能量传递 [J]. 光学学报, 2018, 38(1):0116002.

    CHEN C H, CHEN K, MENG L L, et al.. Luminescent properties and Ce3+→Tb3+energy transfer in CaYAlO4∶Ce3+,Tb3+phosphor [J]. Acta Opt. Sinica, 2018, 38(1):0116002. (in Chinese)

[5] LI K, LIU X, ZHANG Y, et al.. Host-sensitized luminescence properties in CaNb2O6∶Ln3+ (Ln3+=Eu3+/Tb3+/Dy3+/Sm3+ ) phosphors with abundant colors [J]. Inorg. Chem., 2015, 54(1):323-333.

[6] CHANU T T T, SINGH N R. Multicolor luminescence of PbWO4∶RE3+ (Sm3+, Dy3+, Eu3+ and Tb3+) phosphor prepared via hydrothermal method [J]. J. Mater. Sci-Mater El., 2017, 28(4):3909-3916.

[7] SINGH V, RAI V K, SINGH N, et al..Visible up conversion in Er3+/Yb3+ co-doped LaAlO3 phosphors [J]. Spectrochim. Acta A, 2017, 171(1):229-235.

[8] CHEN W. Eu2+ and Eu3+ co-activated LaAlO3 phosphor: synthesis and tuned luminescence [J]. Dalton Trans., 2015, 44(40):17730-17735.

[9] MANOHAR T, NAIK R, PRASHANTHA S C, et al.. Photoluminescence and Judd-Ofelt analysis of Eu3+ doped LaAlO3nanophosphors for WLEDs [J]. Dyes Pigm., 2015, 122(11):22-30.

[10] SINGH D, KAUR J, SURYANARAYANA N S, et al.. Synthesis and luminescent behavior of UV induced Dy3+ activated LaAlO3[J]. J. Mater. Sci-Mater El., 2017, 28(3):2462-2470.

[11] MANOHAR T, PRASHANTHA S C, NAIK R, et al.. A benign approach for tailoring the photometric properties andjudd-ofelt analysis of LaAlO3∶Sm3+nanophosphors for thermal sensorand WLED applications [J]. Sens. Actuators B-Chem., 2017, 243(5):1057-1066.

[12] BORONAT C, RIVERA T, GARCIA-GUINEA J, et al.. Cathodoluminescence emission of RE(Dy,Pr,Eu) doped LaAlO3 phosphors [J]. Radiat. Phys. Chem., 2017, 130(1):236-242.

[13] HERNANDEZ A M, DE LEON ALFARO M A, VILLATORO A B, et al.. Luminescence characteristics of LaAlO3∶Eu3+ obtained by modified Pechinis method [J]. Open J. Synth. Theory Appl., 2017, 6(1):1-12.

[14] FU Z, LIU B. Solution combustion synthesis, photoluminescence and X-ray luminescence of Eu3+-doped LaAlO3 nanophosphors [J]. Ceram. Int., 2016, 42(2):2357-2363.

[15] MANOHAR T, PRASHANTHA S C, NAGASWARUPA H P, et al.. White light emitting Lanthanum aluminate nanophosphor: near ultra violet excited photoluminescence and photometric characteristics [J]. J. Lumin., 2017, 190(10):279-288.

[16] DEREN P J, SZTOLBERG D, BRZOSTOWSKI B, et al.. Spectroscopic properties and Judd-Ofelt analysis of LaAlO3monocrystal doped with Tm3+ions [J]. J. Lumin., 2016, 178(10):400-406.

[17] BOLDYREV K N, DEREN P, POPOVA M N. Deformation splittings in the spectra of LaAlO3∶Ho3+, Pr3+, Tm3+ single crystals [J]. EPJ Web of Confer. EDP Sci., 2017, 132:03004.

[18] ]陈彩花, 杨国辉, 蒙丽丽, 等. 碱土金属离子共掺杂对铕离子在Ca12Al14O32F2中发光性能的影响 [J]. 光学学报, 2017, 37(10):1030001-1-7.

    CHEN C H, YANG G H, MENG L L, et al.. Effect of alkaline earth ion codoping on photoluminescence from europium ion in Ca12Al14O32F2[J]. Acta Opt. Sinica, 2017, 37(10):1030001-1-7. (in Chinese)

[19] YAGOUB M Y A, SWART H C, COETSEE E. Energy transfer study between Ce3+ and Tb3+ ions inacalcium fluoride crystal for solar cell applications [J]. J. Lumin., 2017, 187(7):96-101.

[20] KEMERE M, SPERGA J, ROGULIS U, et al.. Luminescence properties of Eu, RE3+ (RE=Dy, Sm, Tb) co-doped oxyfluoride glasses and glass-ceramics [J]. J. Lumin., 2017, 181(1):25-30.

[21] PRAVEENA R, SAMEERA V S, BABU P, et al.. Photoluminescence properties of Ho3+/Tm3+-doped YAGG nano-crystalline powders [J]. Opt. Mater., 2017, 72(10):666-672.

    PRAVEENA R, SAMEERA V S, BABU P, et al.. Photoluminescence properties of Ho3+/Tm3+-doped YAGG nano-crystalline powders [J]. Opt. Mater., 2017, 72(10):666-672.

[22] HINTZEN H T, VAN KREVE J W H L, BOTTY G. Red emitting luminescent material, Europe Applicaton Patent: EP1104 799 A1 [P]. 1999.

[23] OTTINGER F, NESPER R. Synthesis and crystal structure of the nitridosilicates Ca5Si2N6 and Ca7NbSi2N9 [J]. Z. Anorg. Chem., 2005, 631(9):1597-1602.

[24] UHEDA K, HIROSAKI N, YAMAMOTO Y. Host lattice materials in the system Ca3N2-AlN-Si3N4 for white light emitting diode [J]. Phys. Stat. Sol. A, 2006, 203(11):2712-2717.

[25] LI Y Q, HIROSAKI N, XIE R J. New ternary nitride ceramics: CaSiN2∶Ce3+, Li+ [C]. 67th Autumn Meeting Japan Society of Applied Physics, Sapporo, Japan, 2007:5p-L-11/Ⅲ.

[26] DUAN C J, WANG X J, OTTEN W M. Preparation, electronic structure, and photoliminescence propreties of Eu2+- and Ce3+/Li+-activated alkaline earth silicon nitride MSiN2(M=Sr, Ba) [J]. Chem. Mater., 2007, 20(4):1597-1605.

[27] MUELLER-MACH R. Highly efficient all-nitride phosphor-converted white light emitting diode [J]. Phys. Stat. Sol. A, 2005, 202(9):1727-1732.

[28] LI Y Q, HIROSAKI N, XIE R J. Yellow-orange-emitting CaAlSiN3∶Ce3+ phosphor: structure, photoluminescence, and application in white LEDs [J]. Chem. Mater., 2008, 20(21):6704-6714.

[29] UHEDA K, HIROSAKI N, YAMAMOTO Y. Luminescence properties of a red phosphor, CaAlSiN3∶Eu2+, for white light-emitting diodes [J]. Electrochem. Solid-State Lett., 2006, 9(4):H22-H25.

[30] LEE S S, LIM S, SUM S S. Photoluminescence and electroluminescence charactristics of CaSiN2∶Eu phosphor [J]. SPIE, 1997, 3241:75-83.

[31] LE TOQUIN R, CHEETHAM A K. Red-emitting cerium-based phosphor materials for solid-state lighting applications [J]. Chem. Phys. Lett., 2006, 423(4-6):352-356.

[32] WATANABE H, YAMANE H, KIJIMA N. Crystal structure and luminescence of Sr0.99Eu0.01AlSiN3[J]. J. Solid State Chem., 2008, 181(8):1848-1852.

[33] HORPSAKI N, XIE R J, TAKADA T. Synthesis crystal and local electronic structure, and photoluminescence properties of red-emitting CaAlzSiN2+z∶Eu2+ with oethorombic structure [J]. Int. J. Appl. Ceram. Technol., 2010, 7(6):787-802.

[34] LI J, WATANABE T, SAKAMOTO N. Synthesis of a multinary nitride, Eu-droped CaAlSiN3, from alloy at low temperatures [J]. Chem. Mater., 2008, 20:2095-2105.

[35] WATANABE H, WADE H, SEKI K. Synthetic method and luminescence properties of SrxCa1-xAlSiN3∶Eu2+ mixed nitride phosphors [J]. J. Electronchem. Soc., 2008, 155(3):F31-F36.

[36] PIAO X Q, MACHIDA K, HORIKAWA T. Preparation of CaAlSiN3∶Eu2+ phosphors by the self-propagating high-temperature synthesis and their luminescent properties [J]. Chem. Mater., 2007, 19:4592-4599.

陈彩花, 王小军, 蒙丽丽, 张丽霞, 梁利芳, 刘德尧, 张琳, 任守权, 毛建, 王志富, 张辽. 多孔性氟化物助熔剂制备Eu2+∶(Sr,Ca)AlSiN3红色荧光粉[J]. 发光学报, 2018, 39(7): 930. 陈彩花, 王小军, 蒙丽丽, 张丽霞, 梁利芳, 刘德尧, 张琳, 任守权, 毛建, 王志富, 张辽. Synthetic Method and Luminescence Properties of Red-emitting Phosphorus Eu2+∶(Sr,Ca)AlSiN3 Using Porous Fluoride as Flux[J]. Chinese Journal of Luminescence, 2018, 39(7): 930.

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