2Ji-Guang Li Takayasu lkegami., Co-precipitation synthesis and sintering of yttrium aluminum agrnet(YAG) powders: the effect of precipitant, J. Eur.Cera. Soc. 20(2000)2395±2405.
3Jun-ji Zhang * Jin Owei Ning. Synthesis of uhrafine YAG:Tb phosphor by nitrate-citrate sol-gel combustion process, Mater. Res. Bull. 38 (2003) :1249-1256.
4Shi Shikao Wang Jiye. Combustion synthesis of Eu2 + activated Y3AI5012 phosphor nanopartieles. J. All. Com. 327(2001)82- 86.
5Y. C. Kang I. W. Lenggoro. Photoluminescence characteristics of YAG:Tb phosphor particles with spherical morphology and non-aggregation. J.Phys. Chem. Sol., 60(1999)1855-1858.
6Y. C. Kang S. B. park, I. W. Lenggoro. PREPARATION OF NONAGGREGATION YAG-CE PHOSPHOR PARTICLES BY SPRAY PYROLYSIS. J. Aems. Sci. Vol.29,Suppl. pp. S911- S912.1998.
7Yun Chan Kang I. Wuled Lenggoro. YAG:Ce phosphor particles prepared by ultrason c spray pyrolysis. Mater. Res. Bull. 35(2000)789-798.
8Julien Marehal Tyrone John. Yttrium Aluminum Garnet Nanopowders Produced by Liquid-Feed Flame Spray Pyrolysis(LF-FSP) of Metalloorganic Precursors. Chem. Mater. 2004,16,822 - 831.
二级参考文献5
1Jacobs R R, Krupke W F, Weber M. Measurement of excited-state-absorption loss for Ce3+ in Y3Al5O12 and implications for tunable 5d→4f rare earth lasers [J]. J. Appl. Phys. Lett., 1978, 33: 410.
2Blasse G, Bril A. A new phosphor for flying-spot cathode-ray tubes for color television: yellow-emitting Y3Al5O12-Ce3+ [J]. Appl. Phys. Lett., 1967, 11: 53.
3Nachimuthu P, Shih W C, Liu R S, et al. The study of nanocrystalline cerium oxide by X-ray absorption spectroscopy [J]. J. Solid State Chem., 2000, 149: 408.
4Kück S, Hartung S, Hurling S, et al. Optical transitions in Mn3+-doped garnets [J]. Phys. Rev. B, 1998, 57: 2203.
5Larson A C, Von Dreele R B. General Structure Analysis System. LAUR, 1988.