[1] PYST P, SCHMIDT P J, SCHNICK W. A revolution in lighting [J]. Nat Mater, 2015, 14(5): 454–458.
[2] 曾琦华, 张信果, 梁鸿斌, 等. 白光LED用荧光粉的研究进展[J]. 中国稀土学报, 2011, 29(1): 8–17.
ZENG Qihua, ZHANG Xinguo, LIANG Hongbin, et al. J Chin Rare Earth Soc (in Chinese), 2011, 29(1): 8–17.
[3] 施伟梅, 陈建福, 王妙飞, 等. 燃烧法制备白光LED 用红色荧光粉SrBPO5:Sm3+及发光性能[J]. 硅酸盐学报, 2014, 42(3): 326–329.
SHI Weimei, CHEN Jianfu, WANG Miaofei, et al. J Chin Ceram Soc, 2014, 42(3): 326–329.
[4] GEORGE N C, DENAULT K A, SESHADRI R. Phosphors for solid-State white lighting [J]. Annu Rev Mater Res, 2013, 43(1): 481–501.
[5] SUN X, HAO Z, LI C, et al. Enhanced orange-red emission by using Mo codoped in Ba2CaWO6:Eu3+,Li+ phosphor under near UV excitation [J]. J Lumin, 2013, 134(0): 191–194.
[6] LI P, YANG Z P, PANG L B. Luminescent characteristics of Ba3Y2(BO3)4:Eu3+phosphor for white LED [J]. J Rare Earths, 2008, 26: 44–47.
[7] 杨志平, 于红伟, 马淑媛,等. 红色荧光粉BaZn(PO4)2:Eu3+的制备及其光谱特性[J]. 功能材料与器件学报, 2011, 17(1):36–39.
YHANG Zhiping, YU Hongwei, MA Shuyuan, et al. J Funct Mater Devices (in Chinese), 2011, 17(1):36–39.
[8] 郝敏如, 李贵芳, 贺文文. 白光LED用CaWO4:Eu3+红色荧光粉的制备及发光性能[J]. 硅酸盐学报, 2013, 41(12): 1730–1734.
HAO Minru, LI Guifang, HE Wenwen. J Chin Ceram Soc, 2013, 41(12): 1730–1734.
[9] JAIME L, RODRIGO C, DARIO E, et al. Red-emitting Ln2−xEuxTe2O6:RE (Ln = La, Y; RE = Sm3+, Gd3+) phosphors prepared by the Pechini sol–gel method [J]. J Alloy Compd, 2011, 509: 5295–5299.
[10] NGUYEN H D, KIM S J, YEO I H, et al. Luminescent properties of Eu3+-doped Ba2Bi2/3TeO6 and BaBiNaTeO6 double perovskite as new orange-red emitting phosphors [J]. J Electrochem Soc, 2012, 159 (3): J54–J60.
[11] YU R, WANG C, CHEN J. Photoluminescence characteristics of Eu3+-doped double-perovskite phosphors [J]. J Solid State Sci Technol, 2014, 3 (3): R33–R37.
[12] PHATAK R, GUPTA S K, KRISHNAN K, et al. Crystallographic site swapping of La3+ ion in BaA’LaTeO6 (A’=Na, K, Rb) double perovskite type compounds: diffraction and photoluminescence evidence for the site swapping [J]. Dalton Trans, 2014, 43: 3306–3312.
[13] LOPEZ M L, VEIGA M L, PICO C. Cation ordering in distorted perovskites (MLa) (MgTe)O6 , M = Na, K [J]. J Mater Chem, 1994, 4(4):547–550.
[14] 杨志平, 王凤和, 李盼来, 等. Eu3+LiSrPO4 中的发光及浓度猝灭机理[J]. 硅酸盐通报, 2010, 29(2): 431–435.
YANG Zhiping, WANG Fenghe, LI Panlai, et al. Bull Chin Ceram Soc (in Chinese), 2010, 29(2): 431–435.
[15] 张庆礼, 何伟, 孙敦陆, 等. Judd-Ofelt光谱分析理论[J]. 光谱学与光谱分析, 2005, 25: 329–333.
ZHANG Qingli, HE Wei, SUN Dunlu, et al. Spectrosc Spectral Anal (in Chinese), 2005, 25: 329–333.
[16] 豆喜华, 赵韦人, 宋恩海, 等. 一种新型红色荧光粉K2Ca1?xSiO:xEu3+的发光特性及热稳定性的研究[C]//第七届中国功能材料及其应用学术会议集, 中国重庆, 2011: 463–467.
DOU Xihua, ZHAO Weiren, SONG Enhai, et al. Study of a novel red phosphors K2Ca1-xSiO4: xEu3+ of optical properties, energy transfer and thermal stabilities [C]//Proceedings of 2011 China Functional Materials Technology and Industry Forum, Chongqing, China, 2011: 463–467.
[17] 孟庆裕, 张庆, 李明, 等. Eu3+掺杂CaWO4 红色荧光粉发光性质的浓度依赖关系研究[J]. 物理学报, 2012, 61(10): 107804(1–8).
MENG Qingyu, ZHANG Qing, LI Ming, et al. Acta Phys Sin (in Chinese), 2012, 61(10): 107804(1–8).
[18] ZHANG X, ZHON L, PANG Q, at al. Tunable luminescence and Ce3+→Tb3+→Eu3+ energy transfer of broadband-excited and narrow line red emitting Y2SiO5:Ce3+,Tb3+,Eu3+ phosphor [J]. J Phys Chem C, 2014, 118(14): 7591–7598.
[19] HAN B, ZHANG J, WANG Z, et al. Investigation on the concentration quenching and energy transfer of red-light-emitting phosphor Y2MoO6:Eu3+ [J]. J Lumin, 2014,149: 150–154.
[20] ZHONG J, ZHUANG W, XING X, et al. Synthesis and luminescent properties of a novel red-emitting phosphor: Eu3+-activated Ba2ScO3F [J]. Mater Lett, 2014, 131: 248–251.
[21] 马明星, 朱达川, 涂铭旌. Eu2+的掺杂浓度对BaAl2Si2O8:Eu2+荧光粉发光特性的影响[J]. 物理学报, 2009, 58(8): 5826–5830.
MA Mingxing, ZHU Dachuan, TU Mingjing. Acta Phys Sin (in Chinese), 2009, 58(8): 5826–5830.
[22] KHARABE V R, OZAB H, DHOBLE S J. PL characterizations and concentration quenching effect in Dy3+ and Eu3+ activated LiCaBO3 phosphor [J]. J Lumin, 2015, 30: 432–438.
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