CONTROL OF MICROSTRUCTURE OF NiO-SDC COMPOSITE PARTICLES FOR DEVELOPMENT OF HIGH PERFORMANCE SOFC ANODES

被引:0
|
作者
Kawahara, Koichi [1 ]
Suda, Seiichi [1 ]
Takahashi, Seiji [1 ]
Kawano, Mitsunobu [2 ]
Yoshida, Hiroyuki [2 ]
Inagaki, Toru [2 ]
机构
[1] Japan Fine Ceram Ctr, Atsuta Ku, 2-4-1 Mutsuno, Nagoya, Aichi 4568587, Japan
[2] Kansai Elect Power Co Inc, Amagasaki, Hyogo 661, Japan
来源
ADVANCES IN SOLID OXIDE FUEL CELLS II | 2007年 / 27卷 / 04期
关键词
D O I
暂无
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Three different types of nickel oxide (NiO)-samarium doped ceria (SDC) composite particles were synthesized using the spray pyrolysis technique. The starting conditions were controlled to produce (1) capsule-type particles in which NiO is enveloped with SDC, (2) matrix-type in which SDC is finely dispersed within a matrix of NiO and (3) hollow-type, with a shell of less than 100nm in thickness. The capsule- and matrix-type composite particles were spherical, whereas the hollow-type particles were observed to be a mixture of hollow spheres and flake-like pieces which were probably broken particles. Measurements of the performance of single cells with La0.9Sr0.1Ga0.8Mg0.2O3-delta as the electrolyte, La0.6Sr0.4CoO3-delta as the cathode and each of the three particle types as the anode were made at 750 degrees C. The cells fabricated from the matrix-type particles showed higher power density than those made from the capsule- and hollow-type particles. The better performance of the matrix-type composite was attributed to a lower ohmic loss. It is therefore considered that the matrix type of particle is likely to be best suited to the development of a fine and well-connected network structure which avoids aggregation of nickel phase during cell fabrication, resulting in a lower ohmic loss.
引用
收藏
页码:183 / +
页数:3
相关论文
共 50 条
  • [31] Control of microstructure, sinterability and performance in co-precipitated NiYSZ, CuYSZ and CoYSZ SOFC anodes
    Grgicak, CM
    Green, RG
    Giorgi, JB
    JOURNAL OF MATERIALS CHEMISTRY, 2006, 16 (09) : 885 - 897
  • [32] Development of La-Doped Ni-SDC Anode for High Performance IT-SOFC of Ni-SDC/LSGM/SSC
    Kawahara, K.
    Suda, S.
    Kawano, M.
    Yoshida, H.
    Inagaki, T.
    SOLID OXIDE FUEL CELLS 11 (SOFC-XI), 2009, 25 (02): : 2061 - 2066
  • [33] Redox Tolerant SOFC Anodes with High Electrochemical Performance
    Ouweltjes, J. P.
    van Tuel, M.
    Sillessen, M.
    Rietveld, G.
    FUEL CELLS, 2009, 9 (06) : 873 - 882
  • [34] A strategy for achieving high performance with SOFC ceramic anodes
    Gross, M. D.
    Vohs, J. M.
    Gorte, R. J.
    ELECTROCHEMICAL AND SOLID STATE LETTERS, 2007, 10 (04) : B65 - B69
  • [35] Synthesis and characterization of spray deposited PdO-NiO-SDC composite anode material for potential application in IT-SOFC
    Patil, B. B.
    Pawar, S. H.
    JOURNAL OF ALLOYS AND COMPOUNDS, 2011, 509 (08) : 3644 - 3650
  • [36] High performance of SDC and GDC core shell type composite electrolytes using methane as a fuel for low temperature SOFC
    Irshad, Muneeb
    Siraj, Khurram
    Raza, Rizwan
    Javed, Fayyaz
    Ahsan, Muhammad
    Shakir, Imran
    Rafique, Muhammad Shahid
    AIP ADVANCES, 2016, 6 (02)
  • [37] Microstructure control of NiO-based ion storage layer with various sized NiO particles to evaluate the electrochromic performance
    Choi, Dahyun
    Son, Minhee
    Im, Taehyeob
    Ahn, Sung-Hoon
    Lee, Caroline Sunyong
    MATERIALS CHEMISTRY AND PHYSICS, 2020, 249
  • [38] Development of high efficient composite anodes
    Huang, ST
    Dong, JQ
    Hu, YH
    He, F
    Shen, CC
    Shi, YC
    Feng, T
    RARE METALS, 1999, 18 (01) : 6 - 10
  • [39] Development of High Efficient Composite Anodes
    黄松涛
    董俊卿
    胡永海
    何芬
    沈昌察
    史玉春
    冯堂
    Rare Metals, 1999, (01) : 7 - 11
  • [40] Porous NiO/graphene composite thin films as high performance anodes for lithium-ion batteries
    Chen, Chunhui
    Perdomo, Pedro J.
    Fernandez, Melisa
    Barbeito, Andres
    Wang, Chunlei
    JOURNAL OF ENERGY STORAGE, 2016, 8 : 198 - 204