个人简介
Education
Ph. D. Energy and Environment Science, Nagaoka University of Technology, Nagaoka, Japan, 1989
M. Eng. Mechanical Design and Production Engineering, Nagaoka University of Technology Nagaoka, Japan, 1986
B. Sc. Materials Engineering, Universidad Simón Bolívar, Caracas, Venezuela, 1982
Academic experience
2013-2019: Professor, Clean Energy Research Center, University of Yamanashi, Japan.
2011-present: Invited Professor, Harbin Institute of Technology, China.
2002-2003: Visiting Professor, Nagoya Institute of Technology, Japan.
2002-2003: Visiting Professor, Nagasaki University, Japan.
2002-2013: Invited Professor, Nagaoka University of Technology, Japan.
1989-1990: Assistant Professor, Nagaoka University of Technology, Japan.
Academic experience
2013-2019: Professor, Clean Energy Research Center, University of Yamanashi, Japan.
2011-present: Invited Professor, Harbin Institute of Technology, China.
2002-2003: Visiting Professor, Nagoya Institute of Technology, Japan.
2002-2003: Visiting Professor, Nagasaki University, Japan.
2002-2013: Invited Professor, Nagaoka University of Technology, Japan.
1989-1990: Assistant Professor, Nagaoka University of Technology, Japan.
近期论文
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M. E. Brito, H. Morishita, J. Yamada, H. Nishino, H. Uchida, “Further improvements in performances of La0.6Sr0.4Co0.2Fe0.8O3− δ-doped ceria composite oxygen electrodes with infiltrated doped ceria nanoparticles for reversible oxide cells”, J. Power Sources 427, 293-298 (2019).
R. Nishikawa, H. Nishino, M. E. Brito, K. Kakinuma “Synthesis and evaluation of double-layer electrodes using a Ni–BaCe0.50Zr0.27Y0.20Ni0.03O3− δ cermet with a fused-aggregate network structure as the hydrogen electrode of", J. Ceram. Soc. Jpn. 126 (3), 208-213 (2018).
R. Nishikawa, K. Kakinuma, H. Nishino, M. E. Brito, S. Gopalan, H. Uchida, “Synthesis and Evaluation of Ni Catalysts Supported on BaCe0.5Zr0.3−xY0.2NixO3− δ with Fused-Aggregate Network Structure for the Hydrogen Electrode of Solid Oxide” Catalysts 7 (7), 223 (2017).
K. Shimura, H. Nishino, K. Kakinuma, M.E. Brito, H. Uchida, “High Durability of La0.6Sr0.4Co0.2Fe0.8O3− δ samaria-doped ceria (SDC) composite oxygen electrode with SDC interlayer for reversible solid oxide fuel cell/solid oxide electrolysis cell”, J. Ceram. Soc. Japan, 125 (4), 218-222 (2017)
K. Shimura, H. Nishino, K. Kakinuma, M.E. Brito, H. Uchida, “Effect of samaria-doped ceria (SDC) interlayer on the performance of La0.6Sr0.4Co0.2Fe0.8O3−δ /SDC composite oxygen electrode for reversible solid oxide fuel cells” Electrochimica Acta 225, 114-120, (2017).
L. Fan, Y. Wang, Z. Jia, Y. Xiong, M.E. Brito, “Nanofiber-structured SSC-GDC composite cathodes for a LSGM electrolyte based IT-SOFCs”, Ceramics International, 41 (5), 6583-6588 (2015).
T. Horita, M. Nishi, T. Shimonosono, H. Kishimoto, K. Yamaji, M.E. Brito, H. Yokokawa, “Visualization of oxide ionic diffusion at SOFC at cathode/electrolyte interfaces by isotope labeling techniques”, Solid State Ionics, 262, 398-402, (2014).
H. Kishimoto, H. Suzuki, T. Shimonosono, M. Nishi, K. Yamaji, M.E. Brito, H. Yokokawa, F. Munakata, T. Horita, “Effect of the oxide substrate on the nickel particle properties”, Solid State Ionics, 262, 403-406, (2014).
F. F. Wang, M.E. Brito, K. Yamaji, D. H. Cho, M. Nishi, H. Kishimoto, T.Horita, H. Yokokawa, “Effect of polarization on Sr and Zr diffusion behavior in LSCF/GDC/YSZ system”, Solid State Ionics, 262, 454-459, (2014).
F.F. Wang, M. Nishi, M.E. Brito, H. Kishimoto, K. Yamaji, H. Yokokawa, T. Horita, “Sr and Zr diffusion in LSCF/10GDC/8YSZ triplets for solid oxide fuel cells (SOFCs)” Journal of Power Sources, 258, 281- 289, (2014).
R. Nishida, P. Puengjinda, H. Nishino, K. Kakinuma, M.E. Brito, M. Watanabe, H. Uchida, “High-performance electrodes for reversible solid oxide fuel cell/solid oxide electrolysis cell: Ni-Co dispersed ceria hydrogen electrodes”, RSC Advances, 4(31), 16260-16266, (2014).
Z. H. Wang, G. Y. Shi, J. F. Xia, Y. Z. Xia, F. F. Zhang, L. Xia, D. M. Song, J. Q. Liu, Y.H. Li, L. H. Xia, M.E. Brito, ”Facile preparation of a Pt/Prussian blue/graphene composite and its application as an enhanced catalyst for methanol oxidation” Electrochimica Acta, 121, 245- 252, (2014).