Electric field-induced transformations in bismuth sodium titanate-based materials

材料科学 铁电性 工程物理 八面体 热电性 晶体结构 凝聚态物理 电阻和电导 钝化 热的 磁性 极化(电化学) 单晶 格子(音乐) 遍历性 领域(数学分析) 化学物理 光致发光 固溶体 现象学模型 纳米技术
作者
Giuseppe Viola,Ye Tian,Chuying Yu,Yongqiang Tan,Vladimír Kovaľ,Xiaoyong Wei,Kwang‐Leong Choy,Haixue Yan
出处
期刊:Progress in Materials Science [Elsevier BV]
卷期号:122: 100837-100837 被引量:78
标识
DOI:10.1016/j.pmatsci.2021.100837
摘要

Electric field-induced transformations occur in a myriad of systems with a variegated phenomenology and have attracted widespread scientific interest due to their importance in many applications. The present review focuses on the electric field-induced transformations occurring in bismuth sodium titanate (BNT)-based materials, which are considered an important family of lead-free perovskites and represent possible alternatives to lead-based compounds for several applications. BNT-based systems are generally classified as relaxor ferroelectrics and are characterized by complex structures undergoing various electric field-driven phenomena. In this review, changes in crystal structure symmetry, domain configuration and macroscopic properties are discussed in relation to composition, temperature and electrical loading characteristics, including amplitude, frequency and DC biases. The coupling mechanisms between octahedral tilting with polarization and strain, and other microstructural features are identified as important factors mediating the local and overall electric field-induced response. The role of field-induced transformations on electrical fatigue is discussed by highlighting the effects of ergodicity on domain evolution and fatigue resistance in bipolar and unipolar cycles. The relevance of field-induced transformations in key applications, including energy storage capacitors, actuators, electrocaloric systems and photoluminescent devices is comprehensively discussed to identify materials design criteria. The review is concluded with an outlook for future research.
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