无机材料学报

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基于固溶体中间层的Sm0.5Na0.5TiO3-Sm0.5Li0.5TiO3三层陶瓷微结构特征及微波介电性能研究

刘乐添1,2,3, 屈婧婧1,2,4, 张颢轩4, 刘飞3,4, 程宇烨4, 袁昌来1   

  1. 1.桂林电子科技大学 材料科学与工程学院,桂林 541004;
    2.桂林航天工业学院 机电工程学院,桂林 541004;
    3.广西人工智能学院,南宁 530200;
    4.桂林电子科技大学 机电工程学院,桂林 541004
  • 收稿日期:2026-06-14 修回日期:2026-07-15
  • 通讯作者: 屈婧婧, 教授. E-mail: qujingjing@guat.edu.cn
  • 作者简介:刘乐添(2001-), 男, 硕士研究生. E-mail: liult2001@163.com
  • 基金资助:
    国家自然科学基金(12264009); 桂林市科学研究与技术开发计划(20230121-3); 桂林航天工业学院特色交叉学科领域战略发展专项研究项目(TS2024131); 广西研究生教育创新计划(YCSW2026772)

Microstructural Characteristics and Microwave Dielectric Properties of Sm0.5Na0.5TiO3-Sm0.5Li0.5TiO3 Trilayer Ceramics with a Solid Solution Interlayer

LIU Letian1,2,3, QU Jingjing1,2,4, ZHANG Haoxuan4, LIU Fei3,4, CHENG Yuye4, YUAN Changlai1   

  1. 1. School of Material Science and Engineering, Guilin University of Electronic Technology, Guilin 541004, China;
    2. School of Materials Science and Engineering, Guilin University of Aerospace Technology, Guilin 541004, China;
    3. Guangxi Academy of Artificial Intelligence, Nanning 530200, China;
    4. School of Mechanical and Electrical Engineering, Guilin University of Electronic Technology, Guilin 541004, China
  • Received:2026-06-14 Revised:2026-07-15
  • Contact: QU Jingjing, professor. E-mail: qujingjing@guat.edu.cn
  • Supported by:
    National Natural Science Foundation of China (12264009); Scientific Research and Technological Development Planning Project of Guilin (20230121-3); GUAT Special Research Project on the Strategic Development of Distinctive Interdisciplinary Fields (TS2024131); Innovation Project of Guangxi Graduate Education (YCSW2026772)

摘要: Sm0.5Na0.5TiO3-Sm0.5Li0.5TiO3(SNT-SLT)同晶系钙钛矿双层陶瓷在叠烧过程中,虽可降低层间结合区域因不同体系晶格参数、热膨胀系数不匹配所产生的界面残余应力,但改善效果有限。基于此,本工作设计并制备了以SNT-SLT固溶体为中间层的三层陶瓷,试图降低界面效应引起的非本征介质损耗。采用XRD、SEM-EDS、Raman及TEM对SNT+xg(SNT-SLT)+SLT(x=0.0~0.20)样品的微结构特征进行了系统表征,并测试其微波介电性能。XRD结果表明,三层陶瓷主晶相均为正交钙钛矿结构,无明显杂相生成。拉曼光谱中Ti-O键及A位离子振动特征峰呈现红移趋势,证明材料晶格存在局部弛豫效应,也说明引入固溶体中间层可有效缓解界面应力集中。TEM分析显示中间层晶格均匀且间距介于SNT与SLT之间,反映了中间层应已形成固溶体;EDS分析表明Na+由SNT侧向SLT侧扩散,佐证了适量中间层可形成平缓的成分过渡区。其中,当中间层添加量为x=0.10 g,在1200 ℃烧结4 h时,所制备的三层陶瓷在保持与SNT-SLT双层体系相近的介电常数(εr≈69.5)及良好热稳定性(τf≈+2.1×10-6-1)的基础上,介质损耗有效降低,即品质因数与谐振频率乘积得以提升(Q×f≈3413 GHz)。上述结果表明,通过在SNT与SLT层间引入适量SNT-SLT固溶体作为中间层,可实现层间成分的平缓过渡,有效缓解界面应力、抑制非本征介质损耗,为调控多层同晶型结构陶瓷的微波介电性能提供创新思路。

关键词: 微波介电性能, 介质损耗, 多层陶瓷, 同晶系钙钛矿, 微结构特征

Abstract: During the co-firing of Sm0.5Na0.5TiO3-Sm0.5Li0.5TiO3 (SNT-SLT) isostructural perovskite bilayer ceramics, interfacial residual stress arises from mismatches in lattice parameters and thermal expansion coefficients between the dissimilar layers, which in turn induces extrinsic dielectric loss at the interfaces. Although the isostructural perovskite bilayer design can partially alleviate this stress, the improvement in dielectric loss remains limited. In order to further suppress this interfacial extrinsic dielectric loss, this study designed and fabricated a trilayer ceramic by introducing an SNT-SLT solid-solution intermediate layer. The phase composition, microstructure, and interfacial characteristics of SNT+xg(SNT-SLT)+SLT (x=0.0~0.20) samples were systematically investigated by XRD, SEM-EDS, Raman spectroscopy, TEM, and their microwave dielectric properties were evaluated. XRD results indicate that all trilayer ceramics retain a single orthorhombic perovskite structure without detectable secondary phases. In the Raman spectra, the red shifts of the Ti-O stretching mode and the A-site cation vibration mode indicate local lattice relaxation, confirming that the introduction of the solid-solution interlayer effectively relieves interfacial stress concentration. TEM observations reveal that the intermediate layer exhibits uniform lattice fringes with spacings falling between those of SNT and SLT, reflecting the formation of a solid solution. Meanwhile, EDS analysis shows directional diffusion of Na+ from the SNT side to the SLT side, corroborating that an appropriate amount of the intermediate layer facilitates the formation of a smooth compositional transition zone. When the intermediate-layer addition is 0.10 g and sintering is carried out at 1200 ℃ for 4 h, the trilayer ceramic preserves a dielectric constant (εr ≈ 69.5) and temperature stability (τf ≈ +2.1×10-6-1) comparable to those of the SNT-SLT bilayer system, while showing markedly reduced dielectric loss, as reflected by an improved Q×f value of about 3413 GHz. These results demonstrate that introducing an SNT-SLT solid-solution intermediate layer enables a smooth compositional transition across the interface, effectively relieves interfacial stress, and suppresses extrinsic dielectric loss, thereby providing an effective strategy for tailoring the microwave dielectric properties of multilayer isostructural ceramics.

Key words: microwave dielectric properties, dielectric loss, multilayer ceramics, isostructural perovskite, microstructural characteristics

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