Thermal Effusivity of the Pb0.88Ln0.08Ti0.98Mn0.02O3 (Ln=La, Eu) Ferroelectric Ceramic System by Inverse Photopyroelectric Technique


Journal article


J. J. A. Flores-Cuautle, A. Cruz-Orea, E. Suaste-Gómez
2009

Semantic Scholar DOI
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APA   Click to copy
Flores-Cuautle, J. J. A., Cruz-Orea, A., & Suaste-Gómez, E. (2009). Thermal Effusivity of the Pb0.88Ln0.08Ti0.98Mn0.02O3 (Ln=La, Eu) Ferroelectric Ceramic System by Inverse Photopyroelectric Technique.


Chicago/Turabian   Click to copy
Flores-Cuautle, J. J. A., A. Cruz-Orea, and E. Suaste-Gómez. “Thermal Effusivity of the Pb0.88Ln0.08Ti0.98Mn0.02O3 (Ln=La, Eu) Ferroelectric Ceramic System by Inverse Photopyroelectric Technique” (2009).


MLA   Click to copy
Flores-Cuautle, J. J. A., et al. Thermal Effusivity of the Pb0.88Ln0.08Ti0.98Mn0.02O3 (Ln=La, Eu) Ferroelectric Ceramic System by Inverse Photopyroelectric Technique. 2009.


BibTeX   Click to copy

@article{j2009a,
  title = {Thermal Effusivity of the Pb0.88Ln0.08Ti0.98Mn0.02O3 (Ln=La, Eu) Ferroelectric Ceramic System by Inverse Photopyroelectric Technique},
  year = {2009},
  author = {Flores-Cuautle, J. J. A. and Cruz-Orea, A. and Suaste-Gómez, E.}
}

Abstract

In this work, the thermal effusivities of Pb0.88Ln0.08Ti0.98Mn0.02O3 (Ln=La, Eu) ferroelectric ceramics are studied since it can be use as pyroelectric detectors. Photothermal techniques were used to determine thermal effusivity. The preparation of the ceramics was perform in our laboratory by using the oxide-mixing conventional method. It should be noticed that these ceramics were taken in an unpoled state. All measurements were made at room temperature.


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