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分别采用碳酸氢铵和尿素为沉淀剂用沉淀法制备了Pr掺杂的YAG纳米粉体。并利用XRD、FT-IR、TEM等方法对样品进行了成分、粒度和形貌等性能分析,讨论了不同沉淀剂的反应机理。结果表明,碳酸氢铵沉淀法能够在较低温度下制备颗粒均匀、分散性良好的YAG纳米粉体;而尿素沉淀法所制备的粉体需要较高的煅烧温度,粉体粒径大、团聚较为严重。此外,Pr∶YAG纳米粉体的荧光强度随粉体粒径的增大而加强。

Pr :YAG nanopowders were synthesized by co-precipitant method using two different precipitator- ammonium hydrogen carbonate and urea. The as-prepared nanopowders were characterized by XRD, FT-IR and TEM. The reaction mechanism of different precipitator and the effect on the particle size and dispersion of Pr :YAG powders were investigated. The result shows that uniform particle with good dispersion were obtained by ammonium hydrogen carbonate compared to the larger and agglomerated powders from urea. Moreover, the PL spectroscopy indicated that the larger particle will increase the fluorescence intensity of Pr : YAG nanopowders.

参考文献

[1] Ikesue A;Yoshida K .[J].Journal of Materials Science,1999,34(06):1189-1195.
[2] Ikesue A.;Kamata K.;Yoshida K.;Kinoshita T. .FABRICATION AND OPTICAL PROPERTIES OF HIGH-PERFORMANCE POLYCRYSTALLINE ND-YAG CERAMICS FOR SOLID-STATE LASERS[J].Journal of the American Ceramic Society,1995(4):1033-1040.
[3] Murotani H;Mituda T;Wakaki M et al.[J].JpnJ Ap-pl Phys,2000,39(5A):2748-2749.
[4] LuJ R;LuJ H;MuraiT et al.[J].Japanese Journal of Applied Physics,2001,40(12A):L1277-L1279.
[5] Yanagitani T;Yagi H;Ichikawa M .[P].JP:10-101333,1998.
[6] Yamamoto R M.[A].Japan.Ceramic Laser Materials,2008
[7] Wu Y S;Li J;Qiu F G et al.[J].Ceramics International,2006,32(07):785-788.
[8] WangH Z;Gao L;Niihara K .[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,2000,288(01):1-4.
[9] Palmeroa P;Esnouf C;Montanaro L et al.[J].Journal of the European Ceramic Society,2005,25(09):1563-1573.
[10] LiHL;LiuXJ;HuangLP .[J].Ceramlnt,2007,33(06):1141-1143.
[11] Wang HM.;Simmonds MC.;Huang YZ.;Rodenburg JM. .Synthesis of nanosize powders and thin films of Yb-doped YAG by sol-gel methods[J].Chemistry of Materials,2003(18):3474-3480.
[12] Nyman M;Ccruso J .[J].Journal of the American Ceramic Society,1997,80(05):1231-1238.
[13] Kato S;Iga T;Hatano S et al.[J].Yogyo Kyokaishi,1976,84:215220.
[14] Ji-Guang Li;Takayasu Ikegami;Jong-Heun Lee;Toshiyuki Mori .Low-temperature fabrication of transparent yttrium aluminum garnet (YAG) ceramics without additives[J].Journal of the American Ceramic Society,2000(4):961-963.
[15] Naoya Matsushita;Noriyoshi Tsuchiya;Katsuto Nakatsuka;Takakimi Yanagitani .Precipitation and calcination processes for yttrium aluminum garnet precursors synthesized by the urea method[J].Journal of the American Ceramic Society,1999(8):1977-1984.
[16] Saito N.;Ikegami T.;Matsuda S. .Fabrication of transparent yttria ceramics at low temperature using carbonate-derived powder[J].Journal of the American Ceramic Society,1998(8):2023-2028.
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