Electric Field-Induced Defects Introduced in YSZ Compact and Photoluminescence by Flash Sintering
Author:
Affiliation:
1. Dept. of Material Design Innovation Eng., Nagoya Univ.
Publisher
Society of Materials Science, Japan
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Link
https://www.jstage.jst.go.jp/article/jsms/72/9/72_648/_pdf
Reference17 articles.
1. 1) J. C. M’Peko, J. S. C. Francis and R. Raj, “Field-assisted Sintering of Undoped BaTiO3: Microstructure Evolution and Dielectric Permittivity”, Journal of the European Ceramic Society, Vo. 34, No. 15, pp. 3655-3660 (2014).
2. 2) M. Cologna, J. S. C. Francis and R. Raj, “Field assisted and flash sintering of alumina and its relationship to conductivity and MgO-doping”, Journal of the European Ceramic Society, Vo. 31, No. 15, pp. 2827-2837 (2011).
3. 3) J. M. Lebrun, C. S. Hellberg, S. K. Jha, W. M. Kriven, A. Steveson, K. C. Seymour, N. Bernstein, S. C. Erwin and R. Raj, “In-situ Measurements of Lattice Expansion Related to Defect Generation during Flash Sintering”, Journal of American Ceramics Society, Vo. 100, pp. 4965-4970 (2017).
4. 4) T. Kurachi, Y. Yamashita, T. Tokunaga, H. Yoshida and T. Yamamoto, “Suppression of Nitridation of Yttria-doped Zirconia during Flash Sintering” Journal of American Ceramics Society, Vo. 103, pp. 3002-3007 (2020).
5. 5) J. M. Lebrun, T. G. Morrissey, J. S. C. Francis, K. C. Seymour, W. M. Kriven and R. Raj, “Emergence and Extinction of A New Phase During On–Off Experiments Related to Flash Sintering of 3YSZ”, Journal of American Ceramics Society, Vo. 98, No. 5, pp. 1493-1497 (2015).
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