Influence of reducing atmosphere on the defect chemistry of lead lanthanum zirconate titanate (8/65/35)

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Autoren

  • S. Schaab
  • M. Schulz
  • H. Fritze
  • R. A. Eichel
  • E. Erdem
  • C. H. Rüscher
  • S. Hummelt
  • T. Granzow

Organisationseinheiten

Externe Organisationen

  • Technische Universität Darmstadt
  • Technische Universität Clausthal
  • Forschungszentrum Jülich
  • Albert-Ludwigs-Universität Freiburg
Forschungs-netzwerk anzeigen

Details

OriginalspracheEnglisch
Seiten (von - bis)56-63
Seitenumfang8
FachzeitschriftSOLID STATE IONICS
Jahrgang228
Frühes Online-Datum17 Okt. 2012
PublikationsstatusVeröffentlicht - 30 Nov. 2012

Abstract

The defect structure of lanthanum-modified lead-zirconate-titanate (PLZT) is altered by annealing at 700 °C in different reducing atmospheres and studied by conductivity measurements, different spectroscopic techniques and determination of the thermally stimulated depolarization current (TSDC). It is found that annealing at an oxygen partial pressure of pO2<10 -16 bar leads to the formation of oxygen vacancies VO • • or VO×. If hydrogen is present in the reducing atmosphere, it can be incorporated as either H O or OHO. The defects can be evidenced in both the IR and UV/VIS absorption spectra. Additionally, high levels of reduction cause a shift in the Fermi level, leading to the population of intrinsic Fe impurities, which can possibly be utilized as photorefractive centers.

ASJC Scopus Sachgebiete

Zitieren

Influence of reducing atmosphere on the defect chemistry of lead lanthanum zirconate titanate (8/65/35). / Schaab, S.; Schulz, M.; Fritze, H. et al.
in: SOLID STATE IONICS, Jahrgang 228, 30.11.2012, S. 56-63.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Schaab, S, Schulz, M, Fritze, H, Eichel, RA, Erdem, E, Rüscher, CH, Hummelt, S & Granzow, T 2012, 'Influence of reducing atmosphere on the defect chemistry of lead lanthanum zirconate titanate (8/65/35)', SOLID STATE IONICS, Jg. 228, S. 56-63. https://doi.org/10.1016/j.ssi.2012.09.003
Schaab, S., Schulz, M., Fritze, H., Eichel, R. A., Erdem, E., Rüscher, C. H., Hummelt, S., & Granzow, T. (2012). Influence of reducing atmosphere on the defect chemistry of lead lanthanum zirconate titanate (8/65/35). SOLID STATE IONICS, 228, 56-63. https://doi.org/10.1016/j.ssi.2012.09.003
Schaab S, Schulz M, Fritze H, Eichel RA, Erdem E, Rüscher CH et al. Influence of reducing atmosphere on the defect chemistry of lead lanthanum zirconate titanate (8/65/35). SOLID STATE IONICS. 2012 Nov 30;228:56-63. Epub 2012 Okt 17. doi: 10.1016/j.ssi.2012.09.003
Schaab, S. ; Schulz, M. ; Fritze, H. et al. / Influence of reducing atmosphere on the defect chemistry of lead lanthanum zirconate titanate (8/65/35). in: SOLID STATE IONICS. 2012 ; Jahrgang 228. S. 56-63.
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title = "Influence of reducing atmosphere on the defect chemistry of lead lanthanum zirconate titanate (8/65/35)",
abstract = "The defect structure of lanthanum-modified lead-zirconate-titanate (PLZT) is altered by annealing at 700 °C in different reducing atmospheres and studied by conductivity measurements, different spectroscopic techniques and determination of the thermally stimulated depolarization current (TSDC). It is found that annealing at an oxygen partial pressure of pO2<10 -16 bar leads to the formation of oxygen vacancies VO • • or VO×. If hydrogen is present in the reducing atmosphere, it can be incorporated as either H O• or OHO•. The defects can be evidenced in both the IR and UV/VIS absorption spectra. Additionally, high levels of reduction cause a shift in the Fermi level, leading to the population of intrinsic Fe impurities, which can possibly be utilized as photorefractive centers.",
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author = "S. Schaab and M. Schulz and H. Fritze and Eichel, {R. A.} and E. Erdem and R{\"u}scher, {C. H.} and S. Hummelt and T. Granzow",
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Download

TY - JOUR

T1 - Influence of reducing atmosphere on the defect chemistry of lead lanthanum zirconate titanate (8/65/35)

AU - Schaab, S.

AU - Schulz, M.

AU - Fritze, H.

AU - Eichel, R. A.

AU - Erdem, E.

AU - Rüscher, C. H.

AU - Hummelt, S.

AU - Granzow, T.

N1 - Funding Information: Financial support through LEIBNITZ-Award by Jürgen Rödel, the Energie-Forschungszentrum Niedersachsen (EFZN, Energy Research Center Niedersachsen) , the German Research Foundation (DFG, Deutsche Forschungsgemeinschaft) and the Collaborative Research Center 595 is gratefully acknowledged.

PY - 2012/11/30

Y1 - 2012/11/30

N2 - The defect structure of lanthanum-modified lead-zirconate-titanate (PLZT) is altered by annealing at 700 °C in different reducing atmospheres and studied by conductivity measurements, different spectroscopic techniques and determination of the thermally stimulated depolarization current (TSDC). It is found that annealing at an oxygen partial pressure of pO2<10 -16 bar leads to the formation of oxygen vacancies VO • • or VO×. If hydrogen is present in the reducing atmosphere, it can be incorporated as either H O• or OHO•. The defects can be evidenced in both the IR and UV/VIS absorption spectra. Additionally, high levels of reduction cause a shift in the Fermi level, leading to the population of intrinsic Fe impurities, which can possibly be utilized as photorefractive centers.

AB - The defect structure of lanthanum-modified lead-zirconate-titanate (PLZT) is altered by annealing at 700 °C in different reducing atmospheres and studied by conductivity measurements, different spectroscopic techniques and determination of the thermally stimulated depolarization current (TSDC). It is found that annealing at an oxygen partial pressure of pO2<10 -16 bar leads to the formation of oxygen vacancies VO • • or VO×. If hydrogen is present in the reducing atmosphere, it can be incorporated as either H O• or OHO•. The defects can be evidenced in both the IR and UV/VIS absorption spectra. Additionally, high levels of reduction cause a shift in the Fermi level, leading to the population of intrinsic Fe impurities, which can possibly be utilized as photorefractive centers.

KW - Hydrogen defects

KW - Oxygen vacancies

KW - PLZT

KW - Reduction treatment

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