Preparation and characterization of solid electrolytes based on TiP2O7 pyrophosphate

V. Venckute, P. Dobrovolskis, T. Šalkus, A. Kežionis, A. Dindune, Z. Kanepe, J. Ronis, K. Z. Fung, A. F. Orliukas

研究成果: Article

2 引文 (Scopus)

摘要

The Li4xTi1-xP2O7 (x = 0, 0.06, 0.1, 0.2) powders have been synthesized by the solid state reaction and their ceramics have been sintered. The Li4xTi1-xP2O7 (x = 0.06, 0.1, 0.2) compounds have cubic superstructure 3×3×3 (space group Pa-3), which is also typical for TiP2O7 pyrophosphate. The electrical properties of the ceramics were investigated in the frequency range of 10 to 3·109 Hz and temperature interval of 400-720 K by impedance spectroscopy. The relaxation dispersion region in the conductivity and dielectric permittivitty spectra of Li4xTi1-xP2O7 (x = 0, 0.06, 0.1, 0.2) ceramics was found.

原文English
頁(從 - 到)101-109
頁數9
期刊Ferroelectrics
479
發行號1
DOIs
出版狀態Published - 2015 四月 26

指紋

Solid electrolytes
solid electrolytes
Solid state reactions
Powders
Electric properties
Spectroscopy
ceramics
preparation
Temperature
frequency ranges
electrical properties
impedance
solid state
intervals
conductivity
spectroscopy
diphosphoric acid
temperature

All Science Journal Classification (ASJC) codes

  • Electronic, Optical and Magnetic Materials
  • Condensed Matter Physics

引用此文

Venckute, V., Dobrovolskis, P., Šalkus, T., Kežionis, A., Dindune, A., Kanepe, Z., ... Orliukas, A. F. (2015). Preparation and characterization of solid electrolytes based on TiP2O7 pyrophosphate. Ferroelectrics, 479(1), 101-109. https://doi.org/10.1080/00150193.2015.1012026
Venckute, V. ; Dobrovolskis, P. ; Šalkus, T. ; Kežionis, A. ; Dindune, A. ; Kanepe, Z. ; Ronis, J. ; Fung, K. Z. ; Orliukas, A. F. / Preparation and characterization of solid electrolytes based on TiP2O7 pyrophosphate. 於: Ferroelectrics. 2015 ; 卷 479, 編號 1. 頁 101-109.
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Venckute, V, Dobrovolskis, P, Šalkus, T, Kežionis, A, Dindune, A, Kanepe, Z, Ronis, J, Fung, KZ & Orliukas, AF 2015, 'Preparation and characterization of solid electrolytes based on TiP2O7 pyrophosphate', Ferroelectrics, 卷 479, 編號 1, 頁 101-109. https://doi.org/10.1080/00150193.2015.1012026

Preparation and characterization of solid electrolytes based on TiP2O7 pyrophosphate. / Venckute, V.; Dobrovolskis, P.; Šalkus, T.; Kežionis, A.; Dindune, A.; Kanepe, Z.; Ronis, J.; Fung, K. Z.; Orliukas, A. F.

於: Ferroelectrics, 卷 479, 編號 1, 26.04.2015, p. 101-109.

研究成果: Article

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AU - Venckute, V.

AU - Dobrovolskis, P.

AU - Šalkus, T.

AU - Kežionis, A.

AU - Dindune, A.

AU - Kanepe, Z.

AU - Ronis, J.

AU - Fung, K. Z.

AU - Orliukas, A. F.

PY - 2015/4/26

Y1 - 2015/4/26

N2 - The Li4xTi1-xP2O7 (x = 0, 0.06, 0.1, 0.2) powders have been synthesized by the solid state reaction and their ceramics have been sintered. The Li4xTi1-xP2O7 (x = 0.06, 0.1, 0.2) compounds have cubic superstructure 3×3×3 (space group Pa-3), which is also typical for TiP2O7 pyrophosphate. The electrical properties of the ceramics were investigated in the frequency range of 10 to 3·109 Hz and temperature interval of 400-720 K by impedance spectroscopy. The relaxation dispersion region in the conductivity and dielectric permittivitty spectra of Li4xTi1-xP2O7 (x = 0, 0.06, 0.1, 0.2) ceramics was found.

AB - The Li4xTi1-xP2O7 (x = 0, 0.06, 0.1, 0.2) powders have been synthesized by the solid state reaction and their ceramics have been sintered. The Li4xTi1-xP2O7 (x = 0.06, 0.1, 0.2) compounds have cubic superstructure 3×3×3 (space group Pa-3), which is also typical for TiP2O7 pyrophosphate. The electrical properties of the ceramics were investigated in the frequency range of 10 to 3·109 Hz and temperature interval of 400-720 K by impedance spectroscopy. The relaxation dispersion region in the conductivity and dielectric permittivitty spectra of Li4xTi1-xP2O7 (x = 0, 0.06, 0.1, 0.2) ceramics was found.

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Venckute V, Dobrovolskis P, Šalkus T, Kežionis A, Dindune A, Kanepe Z 等. Preparation and characterization of solid electrolytes based on TiP2O7 pyrophosphate. Ferroelectrics. 2015 4月 26;479(1):101-109. https://doi.org/10.1080/00150193.2015.1012026