Journal of Inorganic Materials ›› 2025, Vol. 40 ›› Issue (6): 697-703.DOI: 10.15541/jim20240482

• RESEARCH ARTICLE • Previous Articles     Next Articles

Effect of V5+ Substitution on Microstructure and Microwave Dielectric Properties of LaTaO4 Ceramics

LI Wenyuan1,2(), XU Jianan1,2, DENG Han'ao1, CHANG Aimin1, ZHANG Bo1()   

  1. 1. State Key Laboratory of Functional Materials and Devices for Special Environmental Conditions, Xinjiang Key Laboratory of Electronic Information Materials and Devices, Xinjiang Technical Institute of Physics & Chemistry, Chinese Academy of Sciences, Urumqi 830011, China
    2. Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, China
  • Received:2024-11-13 Revised:2024-12-31 Published:2025-06-20 Online:2025-01-09
  • Contact: ZHANG Bo, professor. E-mail: zhangbocas@ms.xjb.ac.cn
  • About author:LI Wenyuan (1999-), male, PhD candidate. E-mail: liwenyuan22@mails.ucas.ac.cn
  • Supported by:
    National Natural Science Foundation of China(62471468);Youth Innovation Promotion Association of CAS(Y2023117);Natural Science Foundation of Xinjiang(2024D01E32);Xinjiang Tianshan Talent Training Program(2023TSYCCX0092)

Abstract:

Microwave dielectric ceramics are essential materials for 5G/6G communication technology and are primarily employed in fabrication of electronic components such as resonators, filters and dielectric substrates. With the increasing frequency of wireless mobile communication, it is necessary to develop microwave dielectric ceramics with higher quality factor (Q) and near-zero temperature coefficient of resonance frequency (τf), thus effectively compensating for rapid attenuation of high-frequency signals in transmission process and enhancing stability of their operation. Consequently, La(Ta1-xVx)O4 (LTV-x, 0≤x≤0.4) ceramics were prepared by solid-phase sintering. The structure and dielectric properties of ceramics were investigated using crystal structure refinement, transmission electron microscopy and microwave dielectric property measurements. Two specific compositions of La(Ta1-xVx)O4 ceramics with excellent microwave dielectric properties were synthesized in this system, namely LTV-0.3 (relative dielectric constant εr=22.15, Q×f=90100 GHz, τf=-9.52×10-6-1) and LTV-0.4 (εr=21.75, Q×f=84100 GHz, τf=-4.50×10-6-1) ceramics. Results indicate that V5+ substitution induces the phase transition of LaTaO4 from monoclinic (P21/c) to orthorhombic (Cmc21) phases, while the phase transition temperature is effectively reduced. Their εr and τf values decrease with increasing x due to phase transition. The Q×f values are influenced not only by relative density but also by packing fraction of the unit cell. Considering their low loss and good temperature stability, these ceramic materials demonstrate promising potential for applications in mobile communication base stations, satellite navigation and radar communication technologies.

Key words: LaTaO4, microwave dielectric property, temperature coefficient of resonance frequency, ionic substitution, packing fraction

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