1 |
Direct operation of methane fueled solid oxide fuel cells with Ni cermet anode via Sn modification Yang Q, Chen J, Sun CW, Chen LQ International Journal of Hydrogen Energy, 41(26), 11391, 2016 |
2 |
Characteristic and preparation of Ce0.5Zr0.5O2 as the anode support for solid oxide fuel cells by phase inversion technology Feng J, Qiao JS, Sun W, Yang P, Li HY, Wang ZH, Sun KN International Journal of Hydrogen Energy, 40(37), 12784, 2015 |
3 |
Analysis of the electrochemical performance of MoNi-CeO2 cermet as anode material for solid oxide fuel cell. Part I. H-2, CH4 and H-2/CH4 mixtures as fuels Escudero MJ, de Parada IG, Fuerte A, Serrano JL Journal of Power Sources, 253, 64, 2014 |
4 |
Structural, catalytic/redox and electrical characterization of systems combining Cu-Fe with CeO2 or Ce1-xMxO2-delta (M = Gd or Tb) for direct methane oxidation Hornes A, Munuera G, Fuerte A, Escudero MJ, Daza L, Martinez-Arias A Journal of Power Sources, 196(9), 4218, 2011 |
5 |
Cu1-xPdx/CeO2-impregnated cermet anodes for direct oxidation of methane in LaGaO3-electrolyte solid oxide fuel cells Bi ZH, Zhu JH Journal of Power Sources, 195(10), 3097, 2010 |
6 |
Structural, catalytic/redox and electrical characterization of systems combining Cu-Ni with CeO2 or Ce1-xMxO2-delta (M = Gd or Tb) for direct methane oxidation Hornes A, Gamarra D, Munuera G, Fuerte A, Valenzuela RX, Escudero MJ, Daza L, Conesa JC, Bera P, Martinez-Arias A Journal of Power Sources, 192(1), 70, 2009 |
7 |
Catalytic properties of monometallic copper and bimetallic copper-nickel systems combined with ceria and Ce-X (X = Gd, Tb) mixed oxides applicable as SOFC anodes for direct oxidation of methane Hornes A, Gamarra D, Munuera G, Conesa JC, Martinez-Arias A Journal of Power Sources, 169(1), 9, 2007 |