Pal Subhajit, Swain Atal Bihari, N V Sarath, Murugavel Pattukkannu
Department of Physics, Indian Institute of Technology Madras, Chennai 600036, India.
J Phys Condens Matter. 2020 Jun 12;32(36). doi: 10.1088/1361-648X/ab8f5c.
The compositionally induced ferroelectric to relaxor transformation via diffuse phase transition and structural disorder by external stimuli is explored in lead-free Ba(BiLi)TiO(= 0, 0.05, 0.1, 0.15, and 0.20) ferroelectric system. X-ray diffraction studies reveal the coexistence of the monoclinic phase along with the orthorhombic and tetragonal phases in BaTiOwhich could be the reason for its superior dielectric properties. The dielectric studies reveal that the= 0.15 sample shows intrinsic dielectric relaxation due to the quenched-in random field caused by the atomic displacement. The ferroelectric to relaxor phase transformation is analysed by modified Curie-Weiss law. Furthermore, the driving forces for the relaxor behaviour in the system are attributed to the compositionally induced charge disorder, quenched-in random field, and oxygen vacancy related defects in the BBLT system. The detailed structural analysis on the relaxor ferroelectric samples displays direct evidence for the electric field and mechanical stress driven structural inhomogeneity. Notably, mechanically stressed and electrically poled= 0.15 sample exhibits a remarkable 50% and 37% increase in orthorhombic phase fraction, respectively. Overall, the comprehensive studies on the lead-free modified BaTiOsamples give further insight into understanding the relaxor system.
在无铅Ba(BiLi)TiO(= 0、0.05、0.1、0.15和0.20)铁电体系中,通过扩散相变和外部刺激引起的结构无序,探索了成分诱导的铁电体到弛豫体的转变。X射线衍射研究表明,在BaTiO中,单斜相与正交相和四方相共存,这可能是其优异介电性能的原因。介电研究表明,= 0.15的样品由于原子位移引起的猝灭随机场而表现出本征介电弛豫。通过修正的居里 - 外斯定律分析了铁电体到弛豫体的相变。此外,该体系中弛豫行为的驱动力归因于成分诱导的电荷无序、猝灭随机场以及BBLT体系中与氧空位相关的缺陷。对弛豫铁电样品的详细结构分析显示了电场和机械应力驱动的结构不均匀性的直接证据。值得注意的是,机械应力和电场极化的= 0.15样品的正交相分数分别显著增加了50%和37%。总体而言,对无铅改性BaTiO样品的综合研究为理解弛豫体系提供了进一步的见解。