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Synthesis, characterization, and thermoelectric properties of Ca2.5Ag0.3Lu0.2Co4O9 materials by sol-gel processing for thermoelectric generators

  • Enes Kilinc*
  • , Fatih Uysal
  • , Mucahit Abdullah Sari
  • , Huseyin Kurt
  • , Erdal Celik
  • *Bu çalışma için yazışmadan sorumlu yazar
  • Karabuk University
  • Sakarya University of Applied Sciences
  • Necmettin Erbakan University
  • TeknoHAB Technology Development Zone
  • Bingol University

Araştırma sonucu: Dergiye katkıMakalebilirkişi

2 Atıf (Scopus)

Özet

Layered cobaltite-based oxides are promising p-type thermoelectric materials due to their high thermal stability, oxidation resistance, and decent Seebeck coefficients at elevated temperatures. In this work, Ca2.5Ag0.3Lu0.2Co4O9 ceramics were successfully synthesized via a sol-gel method and investigated for their structural, microstructural, and thermoelectric properties. Ca2.5Ag0.3Lu0.2Co4O9 ceramics synthesized via the sol-gel method demonstrated a stable, homogeneous solution (pH 1.32, turbidity 10.17 ntu). After thermal treatment, the powders formed a pure layered monoclinic Ca3Co4O9 phase with minor Co3O4, preferred (00 l) texture, and dopant-induced lattice strain. Comprehensive characterization, such as TG-DTA, FTIR, XRD, XPS, SEM, and TM, confirmed stepwise removal of organics, nitrates, and water, successful incorporation of Ag+ and Lu3+, mixed Co3+/Co4+ valence states, oxygen vacancies, and well-bonded M − O frameworks. SEM revealed hierarchical microstructures with micron-sized agglomerates composed of nanoscale platelets (30–400 nm) forming stacked, anisotropic layers, promoting efficient charge transport and phonon scattering. Thermoelectric measurements showed p-type behavior with the Seebeck coefficient increasing from 233.17 μV/K to 272.70 μV/K, and electrical resistivity decreasing from 14.96 to 14.31 mΩ cm. The power factor rising from 0.36 to 0.52 mW/mK2 at 800 °C confirmed that the material's structural, microstructural, and electronic features are well-optimized for intermediate-to high-temperature thermoelectric applications.

Orijinal dilİngilizce
Makale numarası102237
DergiJournal of the Indian Chemical Society
Hacim102
Basın numarası12
DOI'lar
Yayın durumuYayınlandı - Ara 2025

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Publisher Copyright:
© 2025 Indian Chemical Society.

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