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Journal of materials science. Materials in electronics, 2021-12, Vol.32 (23), p.27216-27231
2021
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Autor(en) / Beteiligte
Titel
Structural, dielectric and reflection analysis of ZnxMg1−xTiO3 ceramics synthesized using auto-ignition combustion method
Ist Teil von
  • Journal of materials science. Materials in electronics, 2021-12, Vol.32 (23), p.27216-27231
Ort / Verlag
New York: Springer US
Erscheinungsjahr
2021
Quelle
Alma/SFX Local Collection
Beschreibungen/Notizen
  • Zinc-substituted magnesium titanate Zn x Mg 1− x TiO 3 ( x  = 0.00–0.10, δx  = 0.025) solid solutions were synthesized using auto-ignition combustion process and characterized for structural, dielectric and reflection properties. X-ray diffraction analysis discovered the creation of single-phase MgTiO 3 . Scanning electron microscopy (SEM) indicated the existence of low porosity closely packed grains. The study of the dielectric properties indicated that for Zn x Mg 1− x TiO 3 with x  = 0.05, a reasonably great combination of the relative permittivity ( ɛ r ) with value 16.60, loss tangent (tanδ) of 0.9 × 10 −3 and temperature coefficient of resonant frequency ( τ f ) of − 41.37 ppm/°C at 10 kHz was observed. The electromagnetic reflection analysis at microwave frequencies (12.4–26.5 GHz) revealed that composition x  = 0.05 shows maximum 90% reflection bandwidth of 5.60 GHz in the Ku frequency band and 4.59 GHz in the K frequency band. These materials with low to intermediate relative permittivity, low losses, and a minor negative temperature coefficient of resonant frequency might be utilized as a resonator, antenna, and filter substrate for next-generation communication devices.

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