gangongwen Lecturer (higher education)

Supervisor of Master's Candidates

  

  • Date of Birth: 1992-09-08

  • Date of Employment: 2021-03-23

  • Education Level: PhD graduate

  • Degree: Doctor of engineering

  • Gender: Male

  • Professional Title: Lecturer (higher education)

  • Status: 在岗

  • Alma Mater: 电子科技大学

  • Supervisor of Master's Candidates

  • School/Department: 信息科学与技术学院

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    Language: 中文

    Paper Publications

    Ga ions-tailored magnetic-dielectric properties of Mg-Cd composites for high-frequency

    DOI number:10.1016/j.ceramint.2019.12.073

    Journal:Ceramic International

    Key Words:Ga substitutionMg-Cd compositesMiniaturizationHigh radiation efficiency

    Abstract:Mg ferrites are essential to stabilize the spinel structure of magnetic-dielectric composites. This study investigates the effect of Ga ions on the magnetic and dielectric properties and low-loss characteristics of Mg-Cd composites sintered at low temperature with the addition of 2.5 wt% Bi2O3. The variation in the Ga substitution of Fe at the octahedral site, with x increasing from 0.00 to 0.18 (Mg0.8Cd0.2Fe2-xGaxO4), increases magnetization, which plays the key role in determining the permeability. The real part of the permeability (mu') of the Ga substituted ferrites was reported to increase monotonically from 10 H/m to 56 H/m. Meanwhile, the real part of the permittivity (epsilon') was optimized by the Ga ions. Consequently, relatively matching impedance factor (Z approximate to 1.34) and wideband characteristic factor (BWR approximate to 2.5 x 10(-3)) were obtained to achieve miniaturization and high radiation performance of antennas. Additionally, enhanced magnetization (Ms = 22.32 emu/g, He = 55.07 Oe) as well as magnetic (tan delta(mu)similar to 10(-2)) and dielectric tangents (tan delta(epsilon)similar to 10(-4)-10(-3)) of low orders of magnitude promise outstanding operating performance in the high-frequency region.

    Indexed by:SCI

    Volume:46

    Issue:6

    Page Number:8398-8404

    ISSN No.:0272-8842

    Translation or Not:no

    Date of Publication:2020-04-07

    Links to published journals:https://www.sciencedirect.com/science/article/pii/S027288421933562X?via%3Dihub

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