光散射学报, 2019, 31 (1): 83, 网络出版: 2019-04-16  

Eu3+离子掺杂的Ca8Zn(SiO4)4Cl2红色荧光粉的制备及其荧光性能

Synthesis and Luminescence Properties of Eu3+-Doped Ca8Zn(SiO4)4Cl2 Red Phosphors
作者单位
贵阳学院化学与材料工程学院, 贵阳 550005
摘要
采用溶胶-凝胶法合成了系列Ca8Zn(SiO4)4Cl2: Eu3+红色荧光粉。通过X射线粉末衍射、荧光光谱等对合成的荧光粉样品进行表征, 并系统地研究了烧结温度、Eu3+掺杂浓度对样品发光强度的影响。结果表明: 该荧光粉能被近紫外光(393 nm)有效激发; 当烧结温度为800 ℃、Eu3+的掺杂量为5.0%(摩尔分数)时, 样品发射出的荧光强度最强。Ca8Zn(SiO4)4Cl2: Eu3+样品的色坐标(0.684, 0.316)与红色标准值(x=0.670, y=0.330)非常接近。Ca8Zn(SiO4)4Cl2: Eu3+是一种很好的新红色荧光粉。
Abstract
A series of Ca8Zn(SiO4)4Cl2: Eu3+red phosphors were prepared by sol-gel method.The as-prepared samples Ca8Zn(SiO4)4Cl2: Eu3+were tested by the X-ray powder diffraction(XRD) and photoluminescence spectrometer.The effects of sintering temperature and content of Eu3+ on the emission intensity of the sample were investigated.The results show that the phosphors can be efficiently excited in a near-ultraviolet(NUV) light of 393 nm.The most intensive emission intensity of the Ca8Zn(SiO4)4Cl2: Eu3+ phosphors, which is prepared at the sintering temperature of 800 ℃ and the Eu3+ doping concentration of 5.0 mol%, can be obtained.The chromaticity coordinates of the Ca8Zn(SiO4)4Cl2: Eu3+ phosphors are(0.684, 0.316), which is near the standard value of red phosphor(x =0.670, y =0.330).Ca8Zn(SiO4)4Cl2: Eu3+ is a promising red phosphor for white-LED.
参考文献

[1] NAKAMURA S, FASOL G.The Blue Laser Diode: GaN Based Light Emitters and Laser[M].Springer, Berlin, 1997.

[2] LIU J, ZHOU P, WANG Z, et al.Morphologies and luminescence properties of SrZnO2 microstructure[J].J Nanosci Nanotechnol, 2011, 11(8): 6765-71.

[3] BANG Y Y, LEE D S, LIM S R, et al.Identification of Principal Design Features to Develop Environmental Friendly Light-Emitting Diode(LED) Bulbs[J].J Nanoelectron Optoe, 2017, 12(6): 625-630.

[4] CHEN J J, ZHAO Y, LI G H, et al.Facile synthesis of yellow-emitting CaAlSiN3: Ce3+ phosphors and the enhancement of red-component by co-doping Eu2+ ions[J].Solid State Commun, 2017, 255-256: 1-4.

[5] HINOSTROZA I E O, DESIRENA H, HERNANDEZ J, et al.Eu3+-doped glass as a color rendering index enhancer in phosphor-in-glass[J].J Am Ceram Soc, 2018.

[6] ZHENG J H, WU S Q, CHEN G, et al.Blue-emitting Ca5(PO4)3Cl: Eu2+ phosphor for near-UV pumped light emitting diodes: Electronic structures, luminescence properties and LED fabrications[J].J A lloy Compd, 2016, 663: 332-339.

[7] WEI H B, ZHAO Z F, WEI C, et al.Antiphotobleaching: A Type of Structurally Rigid Chromophore Ready for Constructing Highly Luminescent and Highly Photostable Europium Complexes[J].Adv Funct Mater, 2016, 26(13): 2085-2096.

[8] HE X L, YANG D M, HU W Y, et al.Synthesis and Luminescence Properties of Li2ZnSiO4: Eu3+ Red Phosphor[J].J Chin Ceram Soc, 2014, 42(3): 309-313.

[9] SAHU I P, BISEN D P, BRAHME N, et al.Studies on the luminescence behavior of SrCaMgSi2O7: Eu3+ phosphor by solid state reaction method[J].J Mater Sci-Mater El, 2016, 27(2): 1828-1839.

[10] ANNADURAI G, KENNEDY S M M.Synthesis and photoluminescence properties of Ba2CaZn2Si6O17: Eu3+ red phosphors for white LED applications[J].J Lumin, 2016, 169: 690-694.

[11] ZHANG Y, XU J, CUI Q, et al.Eu3+-doped Bi4Si3O12 red phosphor for solid state lighting: microwave synthesis, characterization, photoluminescence properties and thermal quenching mechanisms[J].Sci Rep, 2017, 7: 42464.

[12] ZHOU J B, XIE L J, ZHONG J P, et al.Site occupancy and luminescence properties of Eu3+ in double salt silicate Na3LuSi3O9[J].Opt Mater Express, 2018, 8(4): 736-743.

[13] ZHANG S S, XU R Q, CHEN X R, et al.Preparation and Luminescent Properties of Red Light-emitting Phosphor Ca8Mg(SiO4)4Cl2: Eu3+[J].J Chin Ceram Soc, 2016, 44(10): 1488-1493.

[14] WEI Z R, ZHENG K, HOU T X, et al.Synthesis and luminescent properties of Sr4-xSi3O8Cl4: xEu3+ red phosphor by hydrothermal method[J].Int J Appl Ceram Technol, 2017, 15(1): 1-7.

[15] WU B L.A new compound Ca8Zn(SiO4)4Cl2[J].J Chin Ceram Soc.1988, 16: 381-382.

[16] LIU X R, XU W L.Emission Spectra and Crystallographic Sites of Eu2+-doped Ca8Zn(SiO4)4Cl2[J].J Rare Earth, 1993, 11(2): 102-105.

[17] L W, HAO Z D, ZHANG X, et al.Intense green/yellow emission in Ca8Zn(SiO4)4Cl2: Eu2+, Mn2+ through energy transfer for blue-LED lighting[J].J Lumin, 2011, 131(11): 2387-2390.

[18] L W, HAO Z D, ZHANG X, et al.Eu2+-Activated Ca8Zn(SiO4)4Cl2: An Intense Green Emitting Phosphor for Blue Light Emitting Diodes[J].J Electrochem Soc, 2011, 158(2): H124-H127.

[19] L W, HAO Z D, ZHANG X, et al.Near UV and Blue-based LED Fabricated with Ca8Zn(SiO4)4Cl2: Eu2+ as Green-emitting Phosphor[J].Opt Mater, 2011, 34(1): 261-264.

[20] YADAV P J, JOSHI C P, MOHARIL S V.Persistent luminescence in Ca8Zn(SiO4)4Cl2: Eu2+[J].J Lumin, 2012, 132(10): 2799-2801.

[21] SUN J F, ZHANG Y D.Ce3+-activated Ca8Zn(SiO4)4Cl2: A novel near-ultraviolet converting blue-emitting chlorosilicate phosphor for white light-emitting diodes[J].Mater Lett, 2016, 181: 4-7.

[22] NEERAG S, KIJIMA N, CHEETHAM A K.Novel red phosphors for solid-state lighting: the system NaM(WO4)2-x(MoO4)x: Eu3+(M=Gd, Y, Bi)[J].Chem Phys Lett, 2004, 387(1-3): 2-6.

[23] HALAPPA P, MATHUR A, MARIE-HELENE D, et al.Alkali metal ion co-doped Eu3+ activated GdPO4 phosphors Structure and photoluminescence properties[J].J Alloy Compd, 2018, 740: 1086-1098.

[24] LI Z M, GAO S K, CHEN X X, et al.Synthesis and luminescence properties of green phosphors Ca6Sr4(Si2O7)3Cl2: Eu2+ for white light emitting diodes[J].J Lumin, 2012, 132(6): 1497-1500.

付秋平, 熊莉, 杨莲, 刘渊. Eu3+离子掺杂的Ca8Zn(SiO4)4Cl2红色荧光粉的制备及其荧光性能[J]. 光散射学报, 2019, 31(1): 83. FU Qiuping, XIONG Li, YANG Lian, LIU Yuan. Synthesis and Luminescence Properties of Eu3+-Doped Ca8Zn(SiO4)4Cl2 Red Phosphors[J]. The Journal of Light Scattering, 2019, 31(1): 83.

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!