By W.G. Frankenburg, V.I. Komarewsky, E.K. Rideal (Eds.)
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53. No. 8, 166 (1950). 54. Stowe, R. , and Russell, W. , J . Am. Chem. Soc. 76, 319 (1954). 55. Wilson, A. , Proc. Roy. A133, 458 (1931); A134, 277 (1931). 56. , and Selwood, P. , J . Am. Chem. 74, 1750 (1952). 57. , and Selwood, P. , J . A m . Chem. 74, 2461 (1952). 58. Garner, W. No. 8, 211 (1950). 59. Garner, W. , and Kingman, F. E. , Trans. 27, 322 (1931). 60. Garner, W. , Stone, F. , and Tiley, P. No. 8, 254 (1950). 61. Garner, W. , Stone, F. , and Tiley, P. , Proc. Roy. A211, 472 (1952). 62.
111. The Hydrogen-Deuterium Exchange on Defect Zinc Oxide.. . . . . . . 56 IV. Adsorption of Oxygen and Oxidation Catalysis on Nickel Oxide.. . . . . 60 66 V. Electronic Properties of Nickel Oxide.. . . . . . . . . . . . . . . . VI. Carbon Monoxide Oxidation on Modified Nickel Oxide Catalysts. . . . . 68 VII. Conclusions . . . . . . . . . . . . . . . . . . . . . . . . . . . . 72 References. 72 Since in any catalytic reaction, at least one of the reactants must be chemisorbed, no theory of catalysis can be constructed before the mechanism of chemisorption on the surfaces under investigation is fully understood.
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Advances in Catalysis, Vol. 7 by W.G. Frankenburg, V.I. Komarewsky, E.K. Rideal (Eds.)