화학공학소재연구정보센터
Current Applied Physics, Vol.16, No.8, 843-849, 2016
Dielectric relaxation and ferroelectric phase transition in Sr4BiRTi4Nb6O30 (R = Sm, Eu) ceramics
Sr4BiRTi4Nb6O30 (R = Sm, Eu) ceramics with tetragonal tungsten bronze structure were prepared by the conventional solid state reaction method. The crystalline structure, microstructure, dielectric and ferroelectric properties of the ceramics were investigated. Structural analysis using the powder x-ray diffraction patterns revealed the formation of tetragonal tungsten bronze structure in space group P4bm. Columnar grains with a homogeneous distribution were formed in Sr4BiEuTi4Nb6O30 ceramics, while in Sr4BiSmTi4Nb6O30 ceramics the microstructure became inhomogeneous and some abnormal grains were also formed. The dielectric properties of the ceramics exhibited relaxor type phase transition which can be attributed to the random distribution of Bi and Sm/Eu ions at A1-sites and Ti and Nb ions at the B-sites of the TTB structure. The peak temperature shifted towards the higher temperatures and the magnitude of the dielectric constant decreased with increasing frequency. Moreover, the temperature of the dielectric maximum T-m increased as the radius of the R ion getting decreased. From the P-E hysteresis loops, remnant polarization of 0.83 mu C/cm(2) and 0.6 mu C/cm(2) were obtained for Sr4BiEuTi4Nb6O30 and Sr4BiSmTi4Nb6O30, respectively. (C) 2016 Elsevier B.V. All rights reserved.