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Preparation and analysis of Ca2.6/2.5/2.4Ag0.3Y0.1/0.2/0.3Co4O9 semiconductor materials for thermoelectric devices in possible aerospace uses

  • Enes Kilinc
  • , Fatih Uysal
  • , Mucahit Abdullah Sarı
  • , Suleyman Demir*
  • , Huseyin Kurt
  • , Erdal Celik
  • *Corresponding author for this work
  • Karabuk University
  • Sakarya University of Applied Sciences
  • Turkish Aerospace Industries
  • Marmara University
  • Necmettin Erbakan University
  • Bingol University

Research output: Contribution to journalArticlepeer-review

3 Citations (Scopus)

Abstract

This study focuses on the fabrication and characterization of Ca2.6/2.5/2.4Ag0.3Y0.1/0.2/0.3Co4O9 ceramics for potential thermoelectric applications in the aerospace sector. The materials were synthesized via a sol-gel route using citric acid monohydrate as a gelation agent, with precursors dissolved in distilled water. The turbidity and pH of the solutions were monitored to ensure sol stability. Following gelation, the xerogels were dried at 200 °C for 2 h to remove residual moisture and volatiles. The dried powders were then calcined in air at 800 °C for 2 h to induce phase formation, and the resulting powders were sintered at 900 °C for 24 h to produce bulk p-type semiconductor pellets. A comprehensive characterization was conducted using DTA-TG, FTIR, XRD, XPS, SEM, and thermoelectric property measurements. FTIR, XRD, and XPS analyses confirmed the formation of phase-pure Ca3Co4O9-based structures with successful Ag and Y doping. SEM revealed microstructures with well-developed grain morphologies. Thermoelectric measurements at 800 °C showed a Seebeck coefficient of 227.90 μV/K, electrical resistivity of 12.74 mΩ cm, and a maximum power factor of 0.41 mW/m·K2. These findings suggest that the synthesized ceramics are promising candidates for use in high-temperature thermoelectric generators, particularly in aerospace applications.

Original languageEnglish
Article number100773
JournalResults in Materials
Volume28
DOIs
Publication statusPublished - Dec 2025

Bibliographical note

Publisher Copyright:
Copyright © 2025. Published by Elsevier B.V.

Keywords

  • CaAgYCoO
  • Semiconductivity
  • Sol-gel
  • Thermoelectrics

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