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无铅压电陶瓷和薄膜。

Lead-free piezoelectric ceramics and thin films.

机构信息

Department of Materials Science and Engineering, Rutgers-The State University of New Jersey, Piscataway, NJ, USA.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2010 Oct;57(10):2165-76. doi: 10.1109/TUFFC.2010.1674.

Abstract

Recent progress in lead-free piezoelectric ceramics and thin films with special emphasis on alkaline niobatebased and bismuth sodium titanate-based systems is reviewed concisely. Modifications of potassium sodium niobate (KNN) ceramics are presented and subsequent improvements in the electrical properties are summarized. Special attention is devoted to the phase diagram of the KNN system when a solid solution is formed with other perovskite niobates and titanates. Impact of A-site and B-site dopants on the electromechanical properties of KNN ceramics are distinguished in view of transition temperatures. It is shown that the addition of most A-site and B-site dopants reduces the transition temperatures and improves the piezoactivity at room temperature. This is attributed to the shift of polymorphic transition from tetragonal to orthorhombic phase in the vicinity of room temperature. In contrast, formation of a solid solution of KNN with 18 mol% AgNbO₃ revealed a significant enhancement of properties without a notable change in the transition temperatures. Also, a bismuth sodium titanate (BNT) composition is introduced with particular emphasis on its binary and ternary derivatives. Moderate piezoelectric properties reported at the morphotropic phase boundaries, formed in BNT-based solid solutions are also represented. Advances on thin films based on these two compositions are evaluated and challenges involved with development of stoichiometric thin films with low leakage current are discussed.

摘要

简要综述了无铅压电陶瓷和薄膜的最新进展,特别强调了堿金属铌酸盐基和铋酸钠钛酸盐基体系。介绍了钾钠铌酸盐(KNN)陶瓷的改性,并总结了其电性能的后续改善。特别关注 KNN 系统的相图,当与其他钙钛矿铌酸盐和钛酸盐形成固溶体时。从转变温度的角度出发,区分了 A 位和 B 位掺杂剂对 KNN 陶瓷机电性能的影响。结果表明,大多数 A 位和 B 位掺杂剂的添加都会降低转变温度并提高室温下的压电活性。这归因于在室温附近从四方相到正交相的多型转变的移位。相比之下,KNN 与 18mol% AgNbO₃的固溶体的形成显示出性能的显著增强,而转变温度没有明显变化。还介绍了铋酸钠钛酸盐(BNT)的组成,特别强调了其二元和三元衍生物。还介绍了在 BNT 基固溶体中形成的准同型相界处报告的中等压电性能。评估了基于这两种成分的薄膜的进展,并讨论了开发具有低漏电流的化学计量薄膜所涉及的挑战。

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