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在对稀土发光材料各主要合成方法进行了简单对比的基础上,介绍了燃烧合成技术及其快速、节能、操作简便等特点,介绍了燃烧合成技术在稀土发光材料合成中的应用现状及存在的主要问题,并展望了今后的发展前景.

参考文献

[1] 李成宇,苏锵,邱建荣.稀土元素掺杂长余辉发光材料研究的最新进展[J].发光学报,2003(01):19-27.
[2] 孙彦彬,邱关明,陈永杰,耿秀娟,代少俊.稀土发光材料的合成方法[J].稀土,2003(01):43-48.
[3] 邱克辉,李峻峰,高晓明,傅茂媛.SrAl2O4:Tb3+,Ce3+发光材料的合成与发光特性[J].发光学报,2004(02):197-201.
[4] 孙家跃;杜海燕;胡文祥.固体发光材料[M].北京:化学工业出版社,2003:578.
[5] 肖志国.蓄光型发光材料及其制品[M].北京:化学工业出版社,2002:83.
[6] 张希艳,卢利平,王晓春.溶胶-凝胶法制备SrAl2O4:Eu2+,Dy3+纳米发光材料[J].硅酸盐学报,2003(03):268-271.
[7] 林元华;唐子龙;张中太 等.新型光致发光储能材料的制备及其光学性能的研究[J].材料导报,2000,14(zk):192-194.
[8] 李沅英;戚濂;蔡少华 等.微波热法合成Y2O2S :Eu3+[J].中山大学学报(自然科学版),1998,37(06):64.
[9] MerzhanovAG .History and recent developments in SHS[J].Ceramics International,1995,21(05):371.
[10] 殷声.燃烧合成[M].北京:冶金工业出版社,1999
[11] 郑仕远;李荣缇;罗永明 等.自蔓延燃烧法材料合成技术[J].山东陶瓷,1999,22(04):3.
[12] 殷声;赖和怡.自蔓延高温合成法(SHS)的发展自蔓延高温合成技术和材料[M].北京:冶金工业出版社,1995
[13] 汪兵,任伟.自蔓延高温合成(SHS)技术发展和应用[J].中国表面工程,2000(04):1-4.
[14] KingsleyJJ;Suresh K;Patil K C .Combustion synthesis of fine-particle metal aluminates[J].Journal of Materials Science,1990,25:1305.
[15] 王惠琴;胡建国;徐燕 等.Y2O3:Eu发光材料的快速合成[J].复旦学报(自然科学版),1995,34(05):522.
[16] EkamaramS;Patil K C .Combustion synthesis and properties of Tb3+- and Mn2+- activated green phosphors[J].Journal of Materials Synthesis and Processing,1996,4(05):337.
[17] SheaLE;McKittrick J;Lopez O A et al.Advantages of self-propagating combustion reactions for synthesis of oxide phosphors[J].Journal of the Society For Information Display,1997,5(02):117.
[18] 王惠琴;张磊;马林 等.燃烧法快速合成铝酸锶:铕及其发光性能[J].复旦学报(自然科学版),1997,36(01):65.
[19] 刘胜利;王淑彬;苏锵 .燃烧法合成铝酸盐发光粉的研究[J].应用化学,1997,14(01):59.
[20] 谢平波;张慰萍;尹民 .纳米Ln2O3:Eu(Ln=Gd,Y)荧光粉的燃烧法合成及其光致发光性质[J].无机材料学报,1998,13(01):53.
[21] 陈仲林;万体智;张玉奇 等.燃烧法快速合成长余辉材料[J].重庆建筑大学学报,1998,20(06):67.
[22] J. Fagherazzi;S. Polizzi .Yttria-based nano-sized powders: A new class of fractal materials obtained by combustion synthesis[J].Journal of Materials Research,2000(3):586-589.
[23] Mahalley BN.;Gupta PK.;Pode RB. .Synthesis of GdVO4 : Bi,Eu red phosphor by combustion process[J].Physica Status Solidi, A. Applied Research,2000(1):293-302.
[24] ShikaoS;Jiye W .Combustion synthesis of Eu3+ activated Y3Al5O12 phosphor nanoparticles[J].Journal of Alloys and Compounds,2001,327(1-2):82.
[25] Hirata G A;Carver J;Bosze E J.Long-UV excited white-emitting phosphors[A].,2002:156.
[26] Anh TK.;Minh LQ.;Vu N.;Huong TT.;Huong NT.;Barthou C.;Strek W. .Nanomaterials containing rare-earth ions Tb, Eu, Er and Yb: preparation, optical properties and application potential[J].Journal of Luminescence: An Interdisciplinary Journal of Research on Excited State Processes in Condensed Matter,2003(0):391-394.
[27] Zych E.;Strek W.;Meijerink A.;Mielcarek W.;Domagala K.;Deren PJ. .Preparation, X-ray analysis and spectroscopic investigation of nanostructured Lu2O3 : Tb[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2001(0):8-12.
[28] Zych E.;Meijerink A.;Donega CD. .Quantum efficiency of europium emission from nanocrystalline powders of Lu2O3 : Eu[J].Journal of Physics. Condensed Matter,2003(29):5145-5155.
[29] O. Ozuna;G. A. Hirata;J. McKittrick .Luminescence enhancement in Eu~(3+)-doped α- and γ-Al_(2)O_(3) produced by pressure-assisted low-temperature combustion synthesis[J].Applied physics letters,2004(8):1296-1298.
[30] GuFeng;Wang Shufen;Lu Mengkai et al.Combustion synthesis and luminescence properties of Dy3+-doped MgO nanocrystals[J].Journal of Crystal Growth,2004,260(3-4):507.
[31] 曾冬铭,莫红兵,舒万艮,刘又年,朱丹.燃烧法合成MgSrAl2O4:Eu2+,Dy3+的研究[J].贵州化工,2001(04):11,14.
[32] 丁红,张静娴,刘应亮,杨培慧,冯德雄.燃烧法合成纳米长余辉发光材料BaAl2O4: Eu, Nd[J].暨南大学学报(自然科学与医学版),2002(03):70-74.
[33] 刘胜利,陈征,郭舜之.燃烧法合成SrAl12O19:Eu2+[J].发光学报,2002(06):604-606.
[34] PengTianyou;Yang Huanping;Pu Xuli et al.Combustion synthesis and photoluminescence of SrAl2O4: Eu,Dy phosphor nanoparticles[J].Materials Letters,2004,58:352.
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