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February 23, 2026Journal of Sol-Gel Science and Technology0 citationsOpen Access

Microwave analysis of Ti-doped ZnAl2O4 and Mg-Co-doped variants

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SSSrilali Siragam

Key Points

  • This research aims to evaluate the properties of Ti and Mg-Co-doped ZnAl2O4 for microwave dielectric ceramics.
  • Synthesis of Ti-doped (ZT) and Mg-Co-doped (ZTM) ZnAl2O4 ceramics
  • Assessment of dielectric parameters including relative permittivity and dielectric loss
  • Fabrication of antenna prototypes using synthesized materials
  • Evaluation of return losses and voltage standing wave ratios (VSWR) at 2.19 GHz.
  • ZT sample showed a relative permittivity of 13.49 and dielectric loss of 0.39
  • ZTM composite exhibited a relative permittivity of 14.57 and dielectric loss of 0.158
  • Antennas fabricated with ZT and ZTM demonstrated return losses of -25.96 dB and -16.89 dB respectively
  • Both prototypes confirmed efficient impedance matching with VSWR below 2.

Abstract

Abstract This study investigates zinc aluminate (ZnAl 2 O 4 , denoted as Z)-based microwave dielectric ceramics (MDCs) tailored for wireless communication applications, with an emphasis on microstrip patch antenna performance. Titanium doping (ZT) and co-doping with magnesium (ZTM) were employed to enhance essential dielectric parameters, including a near-zero temperature coefficient of resonant frequency (τ f ≈ 0), moderate relative permittivity (ε r < 20), and low dielectric loss. The synthesized ZT sample demonstrated a relative permittivity (ε r ) of 13.49 and dielectric loss (tanδ) of 0.39, while the ZTM composite exhibited ε r = 14.57 and tanδ = 0.158. Antenna prototypes fabricated using these materials showed excellent return losses of –25.96 dB (ZT) and –16.89 dB (ZTM) at an operating frequency of 2.19 GHz, with voltage standing wave ratios (VSWR) below 2, confirming efficient impedance matching. These results position ZnAl 2 O 4 -based MDCs as promising dielectric candidates for S-band microwave and wireless communication systems.

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Cite This Study

Srilali Siragam (2026) studied this question.

synapsesocial.com/papers/699ba07072792ae9fd86ffcehttps://doi.org/10.1007/s10971-026-07112-4
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