The electrical properties of chemically obtained barium titanate improved by attrition milling

被引:13
作者
Petrovic, M. M. Vijatovic [1 ]
Bobic, J. D. [1 ]
Ursic, H. [2 ]
Banys, J. [3 ]
Stojanovic, B. D. [1 ]
机构
[1] Univ Belgrade, Inst Multidisciplinary Res, Belgrade, Serbia
[2] Jozef Stefan Inst, Ljubljana, Slovenia
[3] Vilnius State Univ, Fac Phys, Vilnius, Lithuania
关键词
Barium titanate; Agglomeration; Dielectric properties; Ferroelectric properties; Piezoelectric properties; IMPEDANCE; CERAMICS;
D O I
10.1007/s10971-013-3075-9
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Barium titanate ceramics were prepared using the nanopowder resulting from a polymeric precursor method, a type of modified Pechini process. The obtained nanopowder was observed to agglomerate and in order to de-agglomerate the powder and enhance the properties of the barium titanate the material was attrition milled. The impact of this attrition milling on the electrical properties of the barium titanate was analysed. The temperature dependence of the relative dielectric permittivity showed three structural phase transitions that are characteristic for ferroelectric barium titanate ceramics. The relative dielectric permittivity at the Curie temperature was higher for the attrition-treated sample than for the non-treated barium titanate. The dielectric losses were below 0.04 in both barium titanate ceramics. The grain and grain-boundary contributions to the total resistivity were observed using impedance analyses for both ceramics. A well-defined ferroelectric hysteresis loop and piezoelectric coefficient d(33) = 150 pC/N were obtained for the ceramics prepared from the de-agglomerated powder. In this way we were able to demonstrate that by attrition milling of chemically obtained powders the ferroelectric and piezoelectric properties of the ceramics could be enhanced.
引用
收藏
页码:267 / 272
页数:6
相关论文
共 21 条
[1]   Nanocrystalline titanium powders by high energy attrition milling [J].
Dabhade, V. V. ;
Mohan, T. R. Rama ;
Ramakrishnan, P. .
POWDER TECHNOLOGY, 2007, 171 (03) :177-183
[2]   Phase transitions and electrical characteristics of tungsten substituted barium titanate [J].
Devi, Sheela ;
Jha, A. K. .
PHYSICA B-CONDENSED MATTER, 2009, 404 (21) :4290-4294
[3]   Preparation and characterization of barium titanate stannate solid solutions [J].
Horchidan, Nadejda ;
Ianculescu, Adelina C. ;
Curecheriu, Lavinia P. ;
Tudorache, Florin ;
Musteata, Valentina ;
Stoleriu, Stefania ;
Dragan, Nicolae ;
Crisan, Dorel ;
Tascu, Sorin ;
Mitoseriu, Liliana .
JOURNAL OF ALLOYS AND COMPOUNDS, 2011, 509 (14) :4731-4737
[4]  
Jaffe B., 1971, Piezoelectric Ceramics
[5]  
Jona F., 1993, Ferroelectric crystal
[6]  
Moulson A.J., 2003, Electroceramics, V2nd
[7]  
Pechini M. P., 1967, U.S. Patent, Patent No. [3,330,697A, 3330697, 3, 330, 697]
[8]   Improvement of barium titanate properties induced by attrition milling [J].
Petrovic, M. M. Vijatovic ;
Bobic, J. D. ;
Radojkovic, A. M. ;
Banys, J. ;
Stojanovic, B. D. .
CERAMICS INTERNATIONAL, 2012, 38 (07) :5347-5354
[9]   Antimony doping effect on barium titanate structure and electrical properties [J].
Petrovic, M. M. Vijatovic ;
Bobic, J. D. ;
Ramoska, T. ;
Banys, J. ;
Stojanovic, B. D. .
CERAMICS INTERNATIONAL, 2011, 37 (07) :2669-2677
[10]   Heating rate and temperature effects on the BaTiO3 formation by thermal decomposition of (Ba,Ti) organic precursors during the Pechini process [J].
Ramajo, L. ;
Parra, R. ;
Reboredo, M. ;
Zaghete, M. ;
Castro, M. .
MATERIALS CHEMISTRY AND PHYSICS, 2008, 107 (01) :110-114