通过控制NaNbO3种子添加和相结构工程提高knn基无铅陶瓷的压电性能

IF 3.9 3区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY Journal of Materials Science Pub Date : 2025-02-06 DOI:10.1007/s10853-025-10676-1
Sumi Kim, Seong-Uk Oh, Dokyum Kim, Jung-A. Lee, Young-Woo Heo, Joon-Hyung Lee, Sahn Nahm
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摘要

本文研究了引入0-5摩尔% NaNbO3 (NN)粒子对knn基无铅压电陶瓷的结构、微观结构、介电、铁电和压电性能的影响。所有样品的最终成分为0.96[0.95(K0.52Na0.48NbO3)−0.05LiSbO3]−0.04SrZrO3-CuO (KNNLS-SZ-C),在1060℃下烧结6 h。x射线衍射分析显示为钙钛矿单相,NN种子含量为0-5 mol%,具有四方、正交和菱形结构的多相共存。当种子含量从0 ~ 3 mol%增加时,正方面体组分增加,正方和正方体组分减少。扫描电镜显示,1-2 mol%的种子生长异常,超过3 mol%的种子生长正常。在3 mol% NN种子下,由于具有良好的多相结构分数和适中的晶粒尺寸,获得了d33 = 323 pC/N, kp = 0.39的最佳压电和机电性能。这项工作阐明了神经网络种子添加,相分数分布和微观结构发展之间的相互作用,以调整这些无铅陶瓷的压电性能。
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Enhancement of piezoelectric properties in KNN-based lead-free ceramics through controlled NaNbO3 seed addition and phase structure engineering

This study investigates the effects of introducing 0–5 mol% NaNbO3 (NN) seeds on the structural, microstructural, dielectric, ferroelectric, and piezoelectric properties of KNN-based lead-free piezoelectric ceramics. All samples with the final composition 0.96[0.95(K0.52Na0.48NbO3) − 0.05LiSbO3] − 0.04SrZrO3–CuO (KNNLS–SZ–C) were sintered at 1060 °C for 6 h. X-ray diffraction analysis revealed a perovskite single phase for 0–5 mol% NN seed contents, with a multiphase coexistence of tetragonal, orthorhombic, and rhombohedral structures. As seed content increased from 0 to 3 mol%, the rhombohedral fraction increased while tetragonal and orthorhombic fractions decreased. SEM micrographs showed abnormal grain growth at 1–2 mol% seeds, transitioning to normal grain growth beyond 3 mol%. Optimal piezoelectric and electromechanical properties including d33 = 323 pC/N, kp = 0.39 were obtained at 3 mol% NN seed, attributed to the favorable multiphase structure fraction and moderate grain size. This work elucidates the interplay between NN seed addition, phase fraction distribution, and microstructural development in tuning the piezoelectric performance of these lead-free ceramics.

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来源期刊
Journal of Materials Science
Journal of Materials Science 工程技术-材料科学:综合
CiteScore
7.90
自引率
4.40%
发文量
1297
审稿时长
2.4 months
期刊介绍: The Journal of Materials Science publishes reviews, full-length papers, and short Communications recording original research results on, or techniques for studying the relationship between structure, properties, and uses of materials. The subjects are seen from international and interdisciplinary perspectives covering areas including metals, ceramics, glasses, polymers, electrical materials, composite materials, fibers, nanostructured materials, nanocomposites, and biological and biomedical materials. The Journal of Materials Science is now firmly established as the leading source of primary communication for scientists investigating the structure and properties of all engineering materials.
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