Yadav Satish, Chandra Mohit, Rawat R, Sathe Vasant, Sinha A K, Singh Kiran
UGC-DAE Consortium for Scientific Research, University Campus, Khandwa Road, Indore, 452001, India.
HXAL, Synchrotrons Utilization Section, RRCAT, Indore 452013, India.
J Phys Condens Matter. 2020 Aug 10;32(44). doi: 10.1088/1361-648X/aba384.
The effect of Sr doping in BaTiO(BTO) with nominal compositions BaSrTiO(BSTO) have been explored on its structural, lattice vibration, dielectric, ferroelectric and electrocaloric properties. The temperature dependent dielectric results elucidate the enhancement in dielectric constant and exhibit three frequency independent transitions around 335, 250 and 185 K, which are related to different structural transitions. All these transitions occur at lower temperature as compared with pristine BTO, however; remnant electric polarization () of BSTO is much higher than in BTO. The value ofis ∼5C cmat room temperature and the maximum∼ 8C cmis observed at tetragonal to orthorhombic and orthorhombic to rhombohedral transitions. The electro-caloric effect shows the maximum adiabatic change in temperature Δ∼ 0.24 K at cubic to tetragonal transition. The temperature dependent synchrotron x-ray diffraction and Raman results show correlations between, crystal structure and lattice vibrations. Our results demonstrate the enhancement in ferroelectric properties of BTO with Sr doping. The origin of the enhancement in ferroelectric property is also discussed in correlations with the appearance of superlattice peak around room temperature due to TiOoctahedral distortion. These enhanced properties would be useful to design lead free high quality ferroelectric and piezoelectric materials.
研究了名义成分为BaSrTiO(BSTO)的Sr掺杂对BaTiO(BTO)的结构、晶格振动、介电、铁电和电热性能的影响。随温度变化的介电结果表明介电常数有所提高,并在335、250和185 K左右呈现出三个与频率无关的转变,这与不同的结构转变有关。然而,与原始BTO相比,所有这些转变都发生在更低的温度下;BSTO的剩余极化强度()远高于BTO。室温下的值约为5 C/cm,在四方相向正交相以及正交相向菱方相转变时观察到的最大值约为8 C/cm。电热效应在立方相向四方相转变时显示出最大绝热温度变化Δ约为0.24 K。随温度变化的同步辐射X射线衍射和拉曼结果表明、晶体结构和晶格振动之间存在相关性。我们的结果证明了Sr掺杂增强了BTO的铁电性能。还结合室温附近由于TiO八面体畸变出现的超晶格峰,讨论了铁电性能增强的起源。这些增强的性能将有助于设计无铅高质量铁电和压电材料。