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介绍了国内外钛酸钡(BaTiO3)粉体的主要制备方法及其发展现状,指出低温燃烧合成法(LCS)法、机械力化学法、水热法方法由于具有许多优良特性而极具发展潜力,并预言钛酸钡的制备方法将会得到迅猛发展.

参考文献

[1] 徐延献.电子陶瓷材料[M].天津:天津大学出版社,1993:131-144.
[2] 黄祥卉,陈振华.电子陶瓷用钛酸钡粉体制备工艺及其发展[J].材料导报,2003(01):30-32.
[3] Advanced Materials & Powders[J].American Ceramic Society bulletin,2000(6):45-56.
[4] Buscaglia, MT;Bassoli, M;Buscaglia, V .Solid-state synthesis of ultrafine BaTiO3 powders from nanocrystalline BaCO3 and TiO2[J].Journal of the American Ceramic Society,2005(9):2374-2379.
[5] Merzhahov A G.History and recent developments in SHS[J].Ceramics International,1995(21):371-379.
[6] 王志伟.自蔓延高温合成技术研究与应用的新进展[J].化工进展,2002(03):175-178,230.
[7] 朱振峰,王若兰.自蔓延燃烧合成陶瓷粉体的研究进展[J].中国陶瓷,2004(01):28-31.
[8] 王劭群;朱长江.水热法合成钛酸钡[J].火工品,1997(01):40-43.
[9] 宿新泰,燕青芝,葛昌纯.低温燃烧合成超细陶瓷微粉的最新研究[J].化学进展,2005(03):430-436.
[10] Anuranhatv;Ranganathans;Mimanit.Combution synthesis of nano-structure barium titanate[J].Scripta Materialia,2001(44):2237-2243.
[11] Shaohua Luo;Zilong Tang;Weihua Yao;Zhongtai Zhang .Low-temperature combustion synthesis and characterization of nanosized tetragonal barium titanate powders[J].Microelectronic engineering,2003(1/4):147-152.
[12] Gaffet E;Niepce J-C;Charlot F;Gras CH;Le Caer G;Guichard J-L;Delcroix P;Mocellin A;Tillement O;Bernard F .Some recent developments in mechanical activation and mechanosynthesis[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,1999(1):305-314.
[13] 苗鸿雁;罗宏杰.新型陶瓷材料制备技术[M].西安:陕西科学技术出版社,2003:63.
[14] 吴其胜,高树军,张少明,杨南如.机械力化学合成BaTiO3纳米晶TEM及HR-TEM研究[J].硅酸盐学报,2002(06):681-685.
[15] 张剑光,张明福,韩杰才,赫晓东,杜善义.高能球磨法制备纳米钛酸钡的晶化过程[J].压电与声光,2001(05):381-383.
[16] 蒲永平,段卫东,吴建鹏.机械力化学法制备钛酸钡粉体[J].陶瓷科学与艺术,2004(01):20-22.
[17] 沈志刚,陈建峰,刘方涛,初广文,Yun Jimmy.纳米钛酸钡电子陶瓷粉体的制备技术[J].化工进展,2002(01):34-36,65.
[18] 丁士文;马广成 .钛酸钡纳米粉的合成与陶瓷制备[J].功能材料,1998,29(01):7274-7277.
[19] 全学军;李大成 .钛酸钡的制备研究进展[J].无机材料学报,2001,16(05):853-855.
[20] Viswanasth R N;Ramasamy S .[J].Nano-Structured Materials,1997,8(02):155-160.
[21] 李青莲,陈维,陈寿田,惠春.纳米晶钛酸钡粉体制备及陶瓷烧结性能的研究[J].压电与声光,2000(01):37-39.
[22] 栾伟玲,高濂,郭景坤.溶胶-凝胶法制备纳米BaTiO3粉体的影响因素[J].无机材料学报,1999(06):861-865.
[23] 周海牛,庄志强,王歆.BaTiO3粉体的水热法合成[J].中国陶瓷,2001(03):44-47.
[24] Christensen A N.Hydrothermal preparation of barium titanate by transporting reactions[J].Acta Chemica Scandinavica,1970(24):244-259.
[25] E. CIFTCI;M. N. RAHAMAN;M. SHUMSKY .Hydrothermal precipitation and characterization of nanocrystalline BaTiO_(3) particles[J].Journal of Materials Science,2001(20):4875-4882.
[26] Xu Huarui;Gao Lian;Guo Jinkun.Preparation and characterizations of tetragonal barium titanate powders by hydrothermal method[J].European Ceramic Society,2002(22):1163-1170.
[27] 徐华蕊,高濂,郭景坤.水热合成高纯四方相钛酸钡纳米粉末研究[J].功能材料,2001(05):558-560.
[28] Jooho Moon;Ender S;Tuo Li.Phase development of barium titanate from chemically modified amorphous titanium(hydrous)oxide precursor[J].European Ceramic Society,2002(22):809-815.
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