[1] 杨志平, 郭智, 王文杰, 朱胜超. Y2O2S:Eu3+, Mg2+, Ti4+红色材料的制备和长余辉性能 [J]. 发光学报 2004.doi:10.3321/j.issn:1000-7032.2004.02.016 [2] Matsuzawa T., Takeuchi N., Murayama Y., Aoki Y.. NEW LONG PHOSPHORESCENT PHOSPHOR WITH HIGH BRIGHTNESS, SRAL2O4-EU2+, DY3+ [J]. Journal of the Electrochemical Society 1996, 8(8). [3] Qiu J., Tanaka K., Shimizugawa Y., Hirao K., Kawasaki M.. Phenomenon and mechanism of long-lasting phosphorescence in Eu2+-doped aluminosilicate glasses [J]. The journal of physics and chemistry of solids 1998, 9(9). [4] Katsumata T., Sasajima K., Matsuzawa T., Nabae T.. Growth and characteristics of long persistent SrAl2O4- and CaAl2O4-based phosphor crystals by a floating zone technique [J]. Journal of Crystal Growth 1998, 3(3). [5] Kinoshita T, YAMAZAKI M, KAWAZOE H. Long-phosphorescence and photostimulated luminescence in Tb-ion-activated reduced calcium aluminate glasses [J]. Journal of Applied Physics 1999, 86. [6] Nobuhiro Kodama, Tomoko Takahashi, Mitsuo Yamaga. Long-lasting phosphorescence in Ce~(3+)-doped Ca_(2)Al_(2)SiO_(7) and CaYAl_(3)O_(7) crystals [J]. Applied physics letters 1999, 12(12). [7] R. Sakai, T. Katsumata, S. Komouro, T. Morikawa. Effect of composition on the phosphorescence from BaAl_2O_4: Eu~(2+), Dy~(3+) crystals [J]. Journal of Luminescence: An Interdisciplinary Journal of Research on Excited State Processes in Condensed Matter 1999, 1/3(1/3). [8] CHUNG-LUN LO, JENG-GONG DUH, BI-SHIOU CHIOU. Synthesis of Eu2 + -activated yttrium oxysulfide red phosphor by flux fusion method [J]. Materials Chemistry and Physics 2001, 71. [9] Wang XX., Zhang ZT., Tang ZL., Lin YH.. Characterization and properties of a red and orange Y2O2S-based long afterglow phosphor [J]. Materials Chemistry and Physics 2003, 1(1). [10] Kitis G., Tuyn JWN., Gomez-Ros JM.. Thermoluminescence glow-curve deconvolution functions for first, second and general orders of kinetics [J]. Journal of Physics, D. Applied Physics: A Europhysics Journal 1998, 19(19). |