1 |
Dynamic chemical state conversion of nickel species supported on silica under CO-NO reaction conditions Yamashita S, Yamamoto Y, Kawabata H, Niwa Y, Katayama M, Inada Y Catalysis Today, 303, 33, 2018 |
2 |
Catalytic CO-NO reaction over Cr-Cu embedded CeO2 surface structure Yoshida H, Okabe Y, Yamashita N, Hinokuma S, Machida M Catalysis Today, 281, 590, 2017 |
3 |
DRIFTS studies on CO and NO adsorption and NO plus CO reaction over Pd2+-substituted CeO2 and Ce0.75Sn0.25O2 catalysts Baidya T, Bera P, Mukri BD, Panda SK, Krocher O, Elsener M, Hegde MS Journal of Catalysis, 303, 117, 2013 |
4 |
Time Decay of the Activity of the Reduction Reaction of NO by CO on a Pd/Al2O3 Catalyst Cortes J, Valencia E, Aguila G, Orellana E, Araya P Catalysis Letters, 126(1-2), 63, 2008 |
5 |
FTIR study of the reduction reaction of NO by CO over Rh/SiO2 catalysts with different crystallite size Araya P, Gracia F, Cortes J, Wolf EE Applied Catalysis B: Environmental, 38(2), 77, 2002 |
6 |
Influence of the simultaneous substitution of Cu and Ru in the perovskite-type (La,Sr)MO3 (M=Al, Mn, Fe, Co) on the catalytic activity for CO oxidation and CO-NO reactions Teraoka Y, Nii H, Kagawa S, Jansson K, Nygren M Applied Catalysis A: General, 194-195, 35, 2000 |
7 |
Pd/Ce0.6Zr0.4O2/Al2O3 as advanced materials for three-way catalysts - Part 1. Catalyst characterisation, thermal stability and catalytic activity in the reduction of NO by CO Di Monte R, Fornasiero P, Kaspar J, Rumori P, Gubitosa G, Graziani M Applied Catalysis B: Environmental, 24(3-4), 157, 2000 |
8 |
Influence of ceria and lanthana promoters on the kinetics of NO and N2O reduction by CO over alumina-supported palladium and rhodium Holles JH, Switzer MA, Davis RJ Journal of Catalysis, 190(2), 247, 2000 |
9 |
Formation and stability of oxide films on platinum-group metals in electrochemical and related environments as probed by surface-enhanced Raman spectroscopy: Dependence on the chemical oxidant Zou SZ, Chan HYH, Williams CT, Weaver MJ Langmuir, 16(2), 754, 2000 |
10 |
Structure and catalytic activity of La1-xFeO3 system (x = 0.00, 0.05, 0.10, 0.15, 0.20, 0.25, 0.35) for the NO+CO reaction Belessi VC, Trikalitis PN, Ladavos AK, Bakas TV, Pomonis PJ Applied Catalysis A: General, 177(1), 53, 1999 |