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基于BNT的三元钙钛矿化合物(计算端元为Bi(Me0.5Ti0.5)O3,Me = Zn、Mg、Ni、Co)的相演变以及容忍因子与机电性能之间的相关性

Phase evolution and correlation between tolerance factor and electromechanical properties in BNT-based ternary perovskite compounds with calculated end-member Bi(Me0.5Ti0.5)O3 (Me = Zn, Mg, Ni, Co).

作者信息

Bai Wangfeng, Shen Bo, Zhai Jiwei, Liu Feng, Li Peng, Liu Baihui, Zhang Yang

机构信息

Functional Materials Research Laboratory, School of Materials Science & Engineering, Tongji University, No. 4800 Caoan Highway, Shanghai 201804, China.

出版信息

Dalton Trans. 2016 Sep 28;45(36):14141-53. doi: 10.1039/c6dt01788f. Epub 2016 Aug 17.

Abstract

In this work, the structure of end-member Bi(Me0.5Ti0.5)O3 (Me = Zn, Ni, Mg, Co) was calculated through a first-principles method and lead-free piezoelectric ternary systems (0.94 -x)(Bi0.5Na0.5)TiO3-0.06BaTiO3-xBi(Me0.5Ti0.5)O3 (Me = Zn, Ni, Mg, Co) (BNT-BT-Bi(Me0.5Ti0.5)O3) were designed to achieve a large strain response for actuator applications. Composition-driven phase transition characteristics and the resulting associated piezoelectric and electromechanical properties were systematically investigated, and schematic phase diagrams were constructed. XRD measurements, Raman spectra analysis and temperature-dependent polarization and strain hysteresis loops indicate that Bi(Me0.5Ti0.5)O3 substitution induces a phase transformation from a ferroelectric rhombohedral to an ergodic relaxor pseudo-cubic phase, accounting for the large strain response (>0.3%) with a high normalized strain Smax/Emax (≥550 pm V(-1)) at around the corresponding critical composition in the vicinity of room temperature. In addition, correlations between the tolerance factor t of the added end-member, the calculated tetragonality and the morphotropic phase boundary (MPB) composition were sought. In comparison to other reported BNT-based systems, there is a noticeable correlation between the MPB composition and the calculated tetragonality of the end-member Bi(Me0.5Ti0.5)O3, and the t value corresponding to the formation of the MPB composition is approximately 0.981 in the present ternary system with low tolerance factor end-members. As a result, we believe that the general correlations and design principles obtained from the present comprehensive research will be effective to predict the approximate MPB region quickly in BNT-based ceramics with an excellent actuating performance.

摘要

在本工作中,通过第一性原理方法计算了端元Bi(Me0.5Ti0.5)O3(Me = Zn、Ni、Mg、Co)的结构,并设计了无铅压电三元体系(0.94 -x)(Bi0.5Na0.5)TiO3-0.06BaTiO3-xBi(Me0.5Ti0.5)O3(Me = Zn、Ni、Mg、Co)(BNT-BT-Bi(Me0.5Ti0.5)O3),以实现用于致动器应用的大应变响应。系统地研究了成分驱动的相变特性以及由此产生的相关压电和机电性能,并构建了示意性相图。X射线衍射测量、拉曼光谱分析以及随温度变化的极化和应变滞后回线表明,Bi(Me0.5Ti0.5)O3替代导致从铁电菱方相到遍历弛豫伪立方相的相变,这解释了在室温附近相应临界成分处具有高归一化应变Smax/Emax(≥550 pm V(-1))的大应变响应(>0.3%)。此外,还寻求了添加的端元的容差因子t、计算得到的四方度与准同型相界(MPB)成分之间的相关性。与其他报道的基于BNT的体系相比,MPB成分与端元Bi(Me0.5Ti0.5)O3计算得到的四方度之间存在明显的相关性,并且在具有低容差因子端元的本三元体系中,对应于MPB成分形成的t值约为0.981。因此,我们认为从本全面研究中获得的一般相关性和设计原则将有效地快速预测具有优异致动性能的基于BNT的陶瓷中的近似MPB区域。

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