Tetragonal-pseudocubic phase boundaries and octahedral order-disorder tilting transitions facilitate high piezoelectric performance in Bi1/2Na1/2TiO3-based single crystals

四方晶系 极化 八面体 材料科学 压电 压电系数 相变 相(物质) 单晶 凝聚态物理 结晶学 衍射 极地的 钙钛矿(结构) 工作(物理) Crystal(编程语言) 去极化 热电性 晶体结构
作者
Jialin Niu,Yongxing Wei,Yanghuan Deng,Changpeng Guan,Changqing Jin,Leiyang Zhang,Ruiyi Jing,Yang Zhong,Zengyun Jian,Zhonghua Dai,Zengzhe Xi,R. G. Burkovsky,Li Jin
出处
期刊:Advanced powder materials [Elsevier BV]
卷期号:5 (1): 100355-100355 被引量:3
标识
DOI:10.1016/j.apmate.2025.100355
摘要

High-performance lead-free piezoelectric single crystals are urgently needed for next-generation actuators and transducers. In this study, we reveal that a compositionally driven tetragonal-pseudocubic (T-PC) phase boundary, in conjunction with an octahedral order–disorder tilting transition, significantly enhances the piezoelectric response in Nb 5+ -substitution (Bi 0.48 Na 0.425 K 0.055 Ba 0.04 )(Ti 0.98 Nb 0.02 )O 3 (BNKBT-2Nb) single crystals. The crystal achieves an outstanding piezoelectric coefficient of d 33 =662 pC/N at room temperature. In situ X-ray diffraction confirms an electric field-induced transition from the PC to T phase. Atomic-resolution HADDF-STEM analysis reveals an increase in the c/a ratio ( c/a > 1.01) on the local scale and ordered octahedral tilting of the a 0 a 0 c + type driven by the poling field. The single crystals exhibit excellent piezoelectric performance over a broad temperature range, achieving a peak d 33 of 920 pC/N at approximately 92 °C. Furthermore, the polar states exhibit a pronounced frequency dependence near the depolarization temperature. These findings provide critical insight into the structure-property relationship and offer a promising pathway for designing advanced lead-free piezoelectric crystals for functional electromechanical applications. This study demonstrates that the presence of a tetragonal–pseudocubic phase boundary, combined with octahedral order-disorder tilting, enhances the piezoelectric response of BNT-based single crystals, achieving a high d 33 of 662 pC/N at room temperature. Under an applied poling field, the tetragonal structure and ordered octahedral tilting are reestablished. Near the depolarization temperature, the polar state exhibits frequency-dependent tunability. • This work proposes a multiscale cooperative control strategy that combines a compositionally driven T–PC phase boundary with an engineered transition between ordered and disordered octahedral tilts, achieved by incorporating Nb 5+ on the B site. • A record-high room-temperature d 33 value of 662 pC/N (representing a 184% enhancement), was obtained and sets a new benchmark. • The strain response exhibits a strong frequency dependence in the vicinity of the depolarization temperature.
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