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(K0.44,Na0.52,Li0.04)(Nb0.84,Ta0.10,Sb0.06)O3 铁电陶瓷

(K0.44,Na0.52,Li0.04)(Nb0.84,Ta0.10,Sb0.06)O3 ferroelectric ceramics.

作者信息

Safari Ahmad, Abazari Maryam, Kerman Kian, Marandian-Hagh Nader, Akdoğan E Koray

机构信息

Glenn Howatt Electronic Ceramics Laboratory, 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. 2009 Aug;56(8):1586-94. doi: 10.1109/TUFFC.2009.1223.

Abstract

Recent progress in (K0.44, Na0.52, Li0.04)O3-based ceramics (KNN) with special emphasis on(K0.44,Na0.52,Li0.04)(Nb0.84,Ta0.10,Sb0.06)O3 (KNN-LT-LS) is reviewed concisely. The base KNN and its compositional derivatives are analyzed in terms of dopant-property relationships, which are then extended to the ternary derivatives. The effects of processing conditions such as humidity, precursor purity, and oxygen partial pressure during sintering are elaborated on from a phenomenological perspective. It is also shown that the spontaneous polarization is sensitive to the processing route chosen for synthesis (mixed oxide versus perovskite routes). Special attention is devoted to the discussion of the morphotropic phase boundary (MPB) dilemma in the KNN-LT-LS system, where it is shown that the origin of high piezoelectric activity is actually due to a polymorphic transition at room temperature. It is shown that prototype transducers based on pure and 1 mol% Ba2+ doped KNN-LT-LS exhibit performance metrics comparable to those fabricated using PZT-5H. Overall, KNNLT- LS ceramics show great promise for lead-free applications, although issues such as temperature dependence of properties and strong sensitivity to processing conditions remain as the 2 major challenges.

摘要

简要综述了基于(K0.44, Na0.52, Li0.04)O3的陶瓷(KNN)的最新进展,特别强调了(K0.44,Na0.52,Li0.04)(Nb0.84,Ta0.10,Sb0.06)O3(KNN-LT-LS)。从掺杂剂-性能关系的角度分析了基础KNN及其成分衍生物,然后将其扩展到三元衍生物。从现象学的角度阐述了烧结过程中湿度、前驱体纯度和氧分压等加工条件的影响。还表明,自发极化对合成所选择的加工路线(混合氧化物路线与钙钛矿路线)敏感。特别关注了KNN-LT-LS系统中准同型相界(MPB)困境的讨论,结果表明,高压电活性的起源实际上是由于室温下的多晶型转变。结果表明,基于纯KNN-LT-LS和1 mol% Ba2+掺杂KNN-LT-LS的原型换能器的性能指标与使用PZT-5H制造的换能器相当。总体而言,KNNLT-LS陶瓷在无铅应用方面显示出巨大潜力,尽管诸如性能的温度依赖性和对加工条件的强烈敏感性等问题仍然是两大挑战。

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