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论文摘要

锂盐助烧0.68Pb(Mg1/3Nb2/3)O3-0.32PbTiO3陶瓷的介电性能

Dielectric Properties of 0.68 Pb(Mg1/3Nb2/3)O3-0.32 PbTiO3 Ceramics with Lithium Salt Sintering Aids

作者:曹林洪(西南科技大学);徐卓(西安交通大学 电子材料研究所);姚熹(西安交通大学 电子材料研究所)

Author:Cao Lin-Hong(Southwest University of Science and Technology);();()

收稿日期:2008-06-23          年卷(期)页码:2009,41(2):145-149

期刊名称:工程科学与技术

Journal Name:Advanced Engineering Sciences

关键字:PMN-PT陶瓷,铌铁矿预产物合成法,锂盐,介电性能。

Key words:PMN-PT ceramics; columbite precursor method; lithium salts; diezoelectric properties.

基金项目:国家自然科学基金

中文摘要

采用铌铁矿预产物合成法制备了锂盐(Li2CO3,LiNO3,LiF)助烧0.68 Pb(Mg1/3Nb2/3)O3-0.32 PbTiO3 [PMN-PT] 弛豫铁电陶瓷。采用XRD分析陶瓷相组成,并对其介电性能进行了测试,结果表明:所有陶瓷样品均为纯钙钛矿相,无任何其它杂相出现;添加Li2CO3和LiNO3使PMN-PT陶瓷的介电损耗降低,而介电常数峰宽、介电弛豫特性以及居里点等变化不明显;但添加LiF使PMN-PT陶瓷的介电损耗增大,介电常数峰变宽,介电弛豫更明显,以及居里点下降。极化后锂盐助烧PMN-PT陶瓷的介电常数和损耗峰均表现为双峰,第一个峰为三方铁电相-四方铁电相的相变峰,约80 ℃左右;第二个峰为四方铁电相-顺电相的相变峰,对添加LiF的试样约为130 ℃,其余试样约为150 ℃。这主要是由于添加Li2CO3和LiNO3试样只发生Li+在PMNT的B位置换产生氧空位,而添加LiF试样可以通过F-取代反应产生铅空位来补偿Li+取代产生的氧空位。

英文摘要

Relaxor ferroelectric 0.68 Pb(Mg1/3Nb2/3)O3-0.32 PbTiO3 [PMN-PT] ceramics with lithium salts (Li2CO3,LiNO3,LiF) sintering aids were prepared by the columbite precursor method. The phase composition of the ceramic samples was investigated by X ray diffraction (XRD), and the dielectric properties of these ceramics were measured. The results showed that pure perovskite phase is obtained for all the specimens. The dielectric loss decreases and other dielectric properties have not distinctly changed for the PMN-PT ceramics with Li2CO3 or LiNO3 addition, but the dielectric loss increases, the peak of dielectric constants is broaden, the dielectric relaxor characteristic is obvious and the Curie temperature descends for the PMN-PT ceramics with LiF addition. Moreover, the peak of dielectric constants and dielectric loss for polarized PMN-PT ceramics with lithium salts sintering aids shows double peaks. The first peak is the transition between rhombohedra ferroelectric phase and tetragonal ferroelectric phase, which is about 80 ℃; and the second peak is the transition between tetragonal ferroelectric phase and paraelectric phase, which is about 130 ℃ for the sample with LiF addition and about 150 ℃ for the others. However, the sample with Li2CO3 or LiNO3 addition may only have cationic (Li+) substitution at B site of PMNT with oxygen vacancies formation, but the sample with LiF addition may have anionic (F-) substitution with lead vacancies formation, which may be compensated with oxygen vacancies formed by cationic (Li+) substitution.

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