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Mendeleev Communications, 1992, Volume 2, Issue 1, Pages 10–11
DOI: https://doi.org/10.1070/MC1992v002n01ABEH000097
(Mi mendc5368)
 

This article is cited in 7 scientific papers (total in 7 papers)

Carbon Monoxide Oxidation on Cobalt Oxides at 80 K: an FT-IR Study

Yu. A. Lokhov, S. F. Tikhov, M. N. Bredikhin, A. G. Zhirnyagin, V. A. Sadykov

G.K. Boreskov Institute of Catalysis, Siberian Branch of the Russian Academy of Sciences, Novosibirsk, Russian Federation
Full-text PDF (790 kB) Citations (7)
Abstract: FTIR spectroscopy has been used to demonstrate that at 80 K carbon monoxide reacts on the surface of cobalt oxides to form molecular CO2, the readsorption of which leads to the formation of stable carbonate complexes.
Document Type: Article
Language: English


Citation: Yu. A. Lokhov, S. F. Tikhov, M. N. Bredikhin, A. G. Zhirnyagin, V. A. Sadykov, “Carbon Monoxide Oxidation on Cobalt Oxides at 80 K: an FT-IR Study”, Mendeleev Commun., 2:1 (1992), 10–11
Linking options:
  • https://www.mathnet.ru/eng/mendc5368
  • https://www.mathnet.ru/eng/mendc/v2/i1/p10
  • This publication is cited in the following 7 articles:
    1. Ugo Cornaro, Stefano Rossini, Tania Montanari, Elisabetta Finocchio, Guido Busca, “K-doping of Co/Al2O3 low temperature Fischer–Tropsch catalysts”, Catalysis Today, 197:1 (2012), 101  crossref
    2. Chen-Bin Wang, Chih-Wei Tang, Hsin-Chi Tsai, Ming-Chih Kuo, Shu-Hua Chien, “In situ FT-IR Spectroscopic Studies on the Mechanism of the Catalytic Oxidation of Carbon Monoxide over Supported Cobalt Catalysts”, Catal Lett, 107:1-2 (2006), 31  crossref
    3. I. N. Martyanov, S. Uma, S. Rodrigues, K. J. Klabunde, “Decontamination of Gaseous Acetaldehyde over CoOx-Loaded SiO2 Xerogels under Ambient, Dark Conditions”, Langmuir, 21:6 (2005), 2273  crossref
    4. P. Thormählen, E. Fridell, N. Cruise, M. Skoglundh, A. Palmqvist, “The influence of CO2, C3H6, NO, H2, H2O or SO2 on the low-temperature oxidation of CO on a cobalt-aluminate spinel catalyst (Co1.66Al1.34O4)”, Applied Catalysis B: Environmental, 31:1 (2001), 1  crossref
    5. V.A Sadykov, L.A Isupova, I.A Zolotarskii, L.N Bobrova, A.S Noskov, V.N Parmon, E.A Brushtein, T.V Telyatnikova, V.I Chernyshev, V.V Lunin, “Oxide catalysts for ammonia oxidation in nitric acid production: properties and perspectives”, Applied Catalysis A: General, 204:1 (2000), 59  crossref
    6. V.A. Sadykov, S.F. Tikhov, S.V. Tsybulya, G.N. Kryukova, S.A. Veniaminov, V.N. Kolomiichuk, N.N. Bulgakov, E.A. Paukshtis, V.P. Ivanov, S.V. Koshcheev, V.I. Zaikovskii, L.A. Isupova, L.B. Burgina, “Role of defect structure in structural sensitivity of the oxidation reactions catalyzed by dispersed transition metal oxides”, Journal of Molecular Catalysis A: Chemical, 158:1 (2000), 361  crossref
    7. V.A. Sadykov, S.F. Tikhov, S.V. Tsybulya, G.N. Kryukova, S.A. Veniaminov, V.N. Kolomiichuk, N.N. Bulgakov, L.A. Isupova, E.A. Paukshtis, V.I. Zaikovskii, G.N. Kustova, L.B. Burgina, Studies in Surface Science and Catalysis, 110, 3rd World Congress on Oxidation Catalaysis, Proceedings of the 3rd World Congress on Oxidation Catalysis, 1997, 1155  crossref
    Citing articles in Google Scholar: Russian citations, English citations
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