Synthesis, structural and dielectric properties of 0.8PMN-0.2PT relaxor ferroelectric ceramic

被引:6
作者
Takarkhede, M. V. [1 ]
Band, S. A. [2 ]
机构
[1] JD Coll Engn & Management JDCOEM, Dept Phys, Nagpur 441501, Maharashtra, India
[2] Yeshwantrao Chavan Coll Engn, Dept Phys, Nagpur 441110, Maharashtra, India
关键词
Relaxor; dielectric properties; perovskite; pyrochlore; sintering temperature; LEAD MAGNESIUM NIOBATE; MORPHOTROPIC PHASE-BOUNDARY; REACTION-SINTERING METHOD; SOL-GEL METHOD; PMN-PT; ELECTRICAL-PROPERTIES; SINGLE-CRYSTALS; ROUTE; TEMPERATURE; TRANSITION;
D O I
10.1007/s12034-017-1444-7
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A 0.8PMN-0.2PT solid-solution ceramic was synthesized by columbite processing technique. The effects of sintering temperature on the density, structure and microstructure and in turn on the dielectric properties were investigated. The ceramics sintered at and above 1050 degrees C resulted in single-phase perovskite formation. However, high density >90% is achieved only after 1170 degrees C. Microstructural analysis revealed that grain size increases with increase in sintering temperature. Asignificant increase in the peak of dielectric permittivity only after 1150 degrees C owing to increase in density is noted in this study. The quadratic law applied to this ceramic demonstrates that the transition is diffused. The broadness in phase transition and lower dielectric relaxation obtained for the composition demonstrate that the ceramic exhibits characteristics of both relaxor and normal ferroelectrics. The ceramic of composition 0.8PMN-0.2PT exhibits excellent dielectric properties epsilon(r-max) = 20294-27338 at 100 Hz with T-c = 100-96 degrees C at low sintering temperature 1170-1180 degrees C, respectively.
引用
收藏
页码:917 / 923
页数:7
相关论文
共 50 条
[21]   Dielectric and ferroelectric properties of 0.8PZT-0.2PCN ceramics under sintering conditions variation [J].
Prasadhetragarn, Anurak ;
Unruan, Muangjai ;
Ngamjarurojana, Athipong ;
Laosiritaworn, Yongyut ;
Ananta, Supon ;
Yimnirun, Rattikorn ;
Cann, David P. .
CURRENT APPLIED PHYSICS, 2009, 9 (05) :1165-1169
[22]   Improvement in dielectric, piezoelectric and ferroelectric properties of 0.64PMN-0.36PT ceramics by Sb modification [J].
Hussain, Abid ;
Sinha, Nidhi ;
Joseph, Abhilash J. ;
Dhankhar, Komal ;
Goel, Sahil ;
Kumar, Binay .
JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS, 2017, 28 (19) :14298-14307
[23]   Fabrication and characterization of perovskite ferroelectric PMN/PT ceramic nanocomposites [J].
Wongmaneerung, R. ;
Yimnirun, R. ;
Ananta, S. .
JOURNAL OF MATERIALS SCIENCE, 2009, 44 (19) :5428-5440
[24]   Investigations of Secondary Contribution to Electrocaloric Effect in Relaxor PMN-PT Ceramic [J].
Correia, T. M. ;
Rokosz, M. .
FERROELECTRICS, 2015, 478 (01) :165-169
[25]   Molten salts synthesis and dielectric properties of PMN-PT ceramics [J].
Zhao, SX ;
Li, Q ;
Song, FB .
PRICM 5: THE FIFTH PACIFIC RIM INTERNATIONAL CONFERENCE ON ADVANCED MATERIALS AND PROCESSING, PTS 1-5, 2005, 475-479 :1153-1156
[26]   Investigation on high energy storage properties in La3+-doped 0.88PMN-0.12PT relaxor ferroelectric films [J].
Xia, Xianjie ;
Sun, Huajun ;
Sui, Huiting ;
Xiao, Shibing ;
Liu, Xiaofang ;
Huang, Duanping .
SURFACES AND INTERFACES, 2022, 28
[27]   Enhanced Ferroelectric, Dielectric Properties of Fe-Doped PMN-PT Thin Films [J].
Feng, Chao ;
Liu, Tong ;
Bu, Xinyu ;
Huang, Shifeng .
NANOMATERIALS, 2021, 11 (11)
[28]   Modelling of relaxor-ferroelectric behaviour of PMN-PT and PMN-PZ ceramics [J].
Tiwari, VS ;
Singh, G ;
Wadhawan, VK .
FERROELECTRICS, 2002, 281 :87-95
[29]   Microstructure and dielectric properties of PZN-PT-BT relaxor ferroelectric ceramics [J].
Wang, XL ;
Xu, ZK ;
Chen, HD .
ASIAN CERAMIC SCIENCE FOR ELECTRONICS II AND ELECTROCERAMICS IN JAPAN V, PROCEEDINGS, 2002, 228-2 :15-20
[30]   Combustion synthesis of nanostructured Ba0.8(Ca,Sr)0.2TiO3 ceramics and their dielectric properties [J].
Singh, Laxman ;
Kim, Ill Won ;
Sin, Byung Cheol ;
Rai, Uma Shanker ;
Hyun, Seung Ho ;
Lee, Youngil .
CERAMICS INTERNATIONAL, 2015, 41 (09) :12218-12228