Araştırma Makalesi

Damping constant, dielectric susceptibility, inverse relaxation time and the activation energy calculated as a function of temperature from the Raman frequency for the rhombohedral-tetragonal phase transition in BaCeO3

Cilt: 19 Sayı: 3 7 Aralık 2017
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Damping constant, dielectric susceptibility, inverse relaxation time and the activation energy calculated as a function of temperature from the Raman frequency for the rhombohedral-tetragonal phase transition in BaCeO3

Öz

Temperature dependences of the damping constant (half width at half maximum), dielectric susceptibility, inverse relaxation time and the activation energy using the 110 cm-1 and 125 cm-1 Raman modes are calculated in the ferroelectric phase (Torder parameter (spontaneous polarization) to calculate their damping constants using the pseudospinphonon coupled model and the energy fluctuation model for the orthorhombic-tetragonal transition in BaCeO3 (TC= 427 K). Our calculated values of the damping constant from both models are in good agreement with the observed data. The inverse relaxation time of the studied Raman modes is predicted using the calculated values of the damping constant from both models (PS and EF) and the values of the order parameter (squared). Dielectric susceptibility is also predicted through the observed frequencies of those Raman modes by using the Landau phenomenological theory. The values of the activation energy are also extracted from the damping constant as calculated from both models using the Raman modes studied in the ferroelectric phase of BaCeO3. )>

Anahtar Kelimeler

Kaynakça

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  2. Scherban, T., Lee, W.K. and Nowick, A.S., Bulk protonic conduction in Yb-doped SrCeO3 and BaCeO3, Solid State Ionics, 28-30, 585-588, (1988).
  3. Scherban, T., Villeneuve, R., Abello, L. and Lucazeau, G., Raman-scattering study of phase-transitions in undoped and rare-earth ion-doped BaCaO3 and SrCeO3, Journal of Raman Spectroscopy, 24, 805-814, (1993).
  4. Loridant, S., Abello, L., Siebert, E. and Lucazeau, G., Correlations between structural and electrical properties of BaCeO3 studied by coupled in-situ Raman scattering and impedance spectroscopy, Solid State Ionics, 78, 249-258 (1995).
  5. Knight, K.S., Structural phase transitions in BaCeO3, Solid State Ionics, 74, 109-117, (1994).
  6. Jacobsen, A.J., Tofield, B.C. and. Fender, B.E.F, The structures of BaCeO3, BaPrO3 and BaTbO3 by neutron diffraction: lattice parameter relations and ionic radii in O-perovskites, Acta Crysttallogr , Sect. B 28, 956-961 (1972).
  7. Genet, F., Loridant S., Ritter C. and Lucazeau G., Phase transitions in BaCeO3: neutron diffraction and Raman studies, Journal of Physics and Chemistry of Solids, 60, 2009-2021, (1999).
  8. Egorov, V.M., Baikov, Yu.M., Kartenko, N.F., Melekh, B.T. and Filin, Yu.N., Calorimetric study of phase transitions in the perovskite BaCeO3, Physics of Solid State, 11, 1911-1914, (1998).

Ayrıntılar

Birincil Dil

İngilizce

Konular

Mühendislik

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

7 Aralık 2017

Gönderilme Tarihi

20 Ağustos 2017

Kabul Tarihi

7 Kasım 2017

Yayımlandığı Sayı

Yıl 2017 Cilt: 19 Sayı: 3

Kaynak Göster

APA
Kiracı, A., & Yurtseven, H. (2017). Damping constant, dielectric susceptibility, inverse relaxation time and the activation energy calculated as a function of temperature from the Raman frequency for the rhombohedral-tetragonal phase transition in BaCeO3. Balıkesir Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 19(3), 77-83. https://doi.org/10.25092/baunfbed.363769
AMA
1.Kiracı A, Yurtseven H. Damping constant, dielectric susceptibility, inverse relaxation time and the activation energy calculated as a function of temperature from the Raman frequency for the rhombohedral-tetragonal phase transition in BaCeO3. BAUN Fen. Bil. Enst. Dergisi. 2017;19(3):77-83. doi:10.25092/baunfbed.363769
Chicago
Kiracı, Ali, ve Hamit Yurtseven. 2017. “Damping constant, dielectric susceptibility, inverse relaxation time and the activation energy calculated as a function of temperature from the Raman frequency for the rhombohedral-tetragonal phase transition in BaCeO3”. Balıkesir Üniversitesi Fen Bilimleri Enstitüsü Dergisi 19 (3): 77-83. https://doi.org/10.25092/baunfbed.363769.
EndNote
Kiracı A, Yurtseven H (01 Aralık 2017) Damping constant, dielectric susceptibility, inverse relaxation time and the activation energy calculated as a function of temperature from the Raman frequency for the rhombohedral-tetragonal phase transition in BaCeO3. Balıkesir Üniversitesi Fen Bilimleri Enstitüsü Dergisi 19 3 77–83.
IEEE
[1]A. Kiracı ve H. Yurtseven, “Damping constant, dielectric susceptibility, inverse relaxation time and the activation energy calculated as a function of temperature from the Raman frequency for the rhombohedral-tetragonal phase transition in BaCeO3”, BAUN Fen. Bil. Enst. Dergisi, c. 19, sy 3, ss. 77–83, Ara. 2017, doi: 10.25092/baunfbed.363769.
ISNAD
Kiracı, Ali - Yurtseven, Hamit. “Damping constant, dielectric susceptibility, inverse relaxation time and the activation energy calculated as a function of temperature from the Raman frequency for the rhombohedral-tetragonal phase transition in BaCeO3”. Balıkesir Üniversitesi Fen Bilimleri Enstitüsü Dergisi 19/3 (01 Aralık 2017): 77-83. https://doi.org/10.25092/baunfbed.363769.
JAMA
1.Kiracı A, Yurtseven H. Damping constant, dielectric susceptibility, inverse relaxation time and the activation energy calculated as a function of temperature from the Raman frequency for the rhombohedral-tetragonal phase transition in BaCeO3. BAUN Fen. Bil. Enst. Dergisi. 2017;19:77–83.
MLA
Kiracı, Ali, ve Hamit Yurtseven. “Damping constant, dielectric susceptibility, inverse relaxation time and the activation energy calculated as a function of temperature from the Raman frequency for the rhombohedral-tetragonal phase transition in BaCeO3”. Balıkesir Üniversitesi Fen Bilimleri Enstitüsü Dergisi, c. 19, sy 3, Aralık 2017, ss. 77-83, doi:10.25092/baunfbed.363769.
Vancouver
1.Ali Kiracı, Hamit Yurtseven. Damping constant, dielectric susceptibility, inverse relaxation time and the activation energy calculated as a function of temperature from the Raman frequency for the rhombohedral-tetragonal phase transition in BaCeO3. BAUN Fen. Bil. Enst. Dergisi. 01 Aralık 2017;19(3):77-83. doi:10.25092/baunfbed.363769

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