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原位复合钛酸铅/镍(铅)铁氧体复相粉体的制备研究 被引量:3

In Situ Combination and Phase Formation of Sol-Gel Derived PbTiO_3/(Ni,Pb) Ferrite Multiphase Powders
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摘要 利用sol-gel法并通过原位复合方法制备了具有铁电性能的PbTiO3和具有铁磁性能的NiFe2O4和PbFe12O19多相复合体系陶瓷粉体.利用XRD、SEM对多相复合体系的物相结构和形貌等进行研究.结果表明,在700℃时可控制形成纯铁电(PbTiO3)/铁磁(NiFe2O4)两相复合体系,在750℃以上则形成铁电(PbTiO3)/铁磁(NiFe2O4和PbFe12O19)三相复合体系.热处理温度对多相复合体系晶相的形成和生长产生关键性作用.多相复合共存体系中形成的晶相多以固溶体存在,各固溶晶相的晶格常数随固溶量的不同而不同. Ferroelectric/ferromagnetic multiphase composite powders consisting of PbTiO3 as ferroelectricity and NiFe2O4 (PbFe12O19) as ferromagnetism were successfully formed in situ by the sol-gel method. The phase structure was measured by XRD and the morphology was observed by SEM. The results show that the biphase composite powder consisting of PbTiO3 and NiFe2O4 are formed at - 700℃ and the triphase composite powder consisting of PbTiO3, NiFe2O4 and PbFe12O19, above 750℃ in situ in a lead-acetate/tetrabutyl-titanate/nickel-acetate/ferric-nitrate precursor system. The forming and growing processes are dependent on the calcination temperatures of the powders. In addition, the phases coexisting in the composite system are mostly in forms of solid solutions, and the lattice constant of each phase varies with the different amount of phase solubility.
出处 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2005年第5期1071-1076,共6页 Journal of Inorganic Materials
基金 教育部高等学校博士学科点专项科研基金(20020335017)国家自然科学基金(50372057 50332030)
关键词 铁电/铁磁复合材料 钛酸铅/镍(铅)铁氧体 原位形成 SOL-GEL法 ferroelectric/magnetic composite PbTiO3/Ni(Pb)-ferrite in situ combination sol-gel method
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参考文献15

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