Masayuki Dokiya

Affiliations: 
The University of Tokyo (Japan) 
Google:
"Masayuki Dokiya"
Mean distance: (not calculated yet)
 
BETA: Related publications

Publications

You can help our author matching system! If you notice any publications incorrectly attributed to this author, please sign in and mark matches as correct or incorrect.

Horita T, Sakai N, Kawada T, et al. (2005) Grain-boundary diffusion of strontium in (La, Ca)CrO3 Perovskite-type oxide by SIMS Journal of the American Ceramic Society. 81: 315-320
Herle JV, Horita T, Kawada T, et al. (2005) Fabrication and sintering of fine yttria-doped ceria powder Journal of the American Ceramic Society. 80: 933-940
Nguyen TL, Honda T, Kato T, et al. (2004) Fabrication and characterization of anode-supported tubular SOFCs with zirconia-based electrolyte for reduced temperature operation Journal of the Electrochemical Society. 151: A1230-A1235
Sasaki K, Hosoda K, Lan TN, et al. (2004) Ag–Zr(Sc)O2 cermet cathode for reduced temperature SOFCs Solid State Ionics. 174: 97-102
Nguyen TL, Kobayashi K, Honda T, et al. (2004) Preparation and evaluation of doped ceria interlayer on supported stabilized zirconia electrolyte SOFCs by wet ceramic processes Solid State Ionics. 174: 163-174
Shiono M, Kobayashi K, Nguyen TL, et al. (2004) Effect of CeO2 interlayer on ZrO2 electrolyte/La(Sr)CoO3 cathode for low-temperature SOFCs Solid State Ionics. 170: 1-7
Hoshino T, Kawamura H, Dokiya M, et al. (2004) Non-stoichiometry of Li2TiO3 under hydrogen atmosphere conditions Journal of Nuclear Materials. 329: 1300-1304
Wang S, Katsuki M, Hashimoto T, et al. (2003) Expansion Behavior of Ce1 − y Gd y O 2.0 − 0.5y − δ under Various Oxygen Partial Pressures Evaluated by HTXRD Journal of the Electrochemical Society. 150: 952-958
Wang S, Katsuki M, Dokiya M, et al. (2003) High temperature properties of La0.6Sr0.4Co0.8Fe0.2O3−δ phase structure and electrical conductivity Solid State Ionics. 159: 71-78
Montross CS, Yokokawa H, Dokiya M. (2002) Thermal stresses in planar solid oxide fuel cells due to thermal expansion differences British Ceramic Transactions. 101: 85-93
See more...