(K,Na)1-2x Sr x NbO3无铅压电陶瓷弛豫铁电性的增强机理研究

Investigations of the mechanism of enhanced relaxor ferroelectricity of (K,Na)1-2x Sr x NbO3 lead-free piezoelectric ceramics

  • 摘要: 在传统固相反应法制备(K,Na)1-2x Sr x NbO3(KNSN)粉体的基础上,利用常压固相烧结工艺制备了KNSN陶瓷。系统研究了Sr2+离子掺杂对KNSN陶瓷的物相结构演变规律、介电弛豫特性及铁电性能的影响。采用X射线衍射仪、扫描电镜、精密阻抗分析仪和铁电测试系统,分别探究了KNSN陶瓷的物相结构、表观形貌、介电性能和铁电性能。实验结果表明,随着Sr2+离子掺杂量的递增,KNSN陶瓷的物相结构对称性提高、致密化增强、介电弛豫特性增强。重点揭示了Sr2+离子掺杂增强铌酸钾钠弛豫铁电性能的机理,为高性能无铅弛豫铁电体的设计提供理论依据。

     

    Abstract: (K,Na)1-2x Sr x NbO3 (KNSN) ceramics were synthesized via solid-state sintering method, building upon the preparation of KNSN powders by the conventional solid-state reaction method. The regulatory mechanisms of Sr2+ doping on crystal structural evolution, dielectric relaxation behavior, and ferroelectric properties were systematically investigated. The phase structure, surface morphology, dielectric properties, and ferroelectric performance of the ceramics were characterized using X-ray diffraction (XRD), scanning electron microscopy (SEM), precision impedance analysis, and ferroelectric testing systems, respectively. Experimental results demonstrated that, the KNSN ceramics exhibited the enhanced structural symmetry, improved densification, and strengthened dielectric relaxation with increasing Sr2+ doping content. The modulation of relaxor ferroelectric behavior in sodium potassium niobate-based lead-free piezoelectric ceramics was revealed through Sr2+ doping and clarifying the underlying mechanisms systematically, providing both theoretical and experimental support for the design of high-performance lead-free relaxor ferroelectrics.

     

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