Further evidence for equilibrium surface segregation in the CuNi alloys - CO s H2 chemisorption
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Surfaces, Coatings and Films,Surfaces and Interfaces,Condensed Matter Physics
Reference16 articles.
1. Adsorption an Einkristall-Oberflächen von Cu/Ni-legierungen. I
2. Auger spectra of copper-nickel alloys
3. Auger Spectroscopy Study on the Surface Composition of Copper–Nickel Alloys after Annealing and Sputtering
4. Relation between catalytic activity pattern and surface composition of Cu$z.sbnd;Ni alloy An application of Auger electron spectroscopy to the study on catalysis
5. Observation of the segregation of Cu to the surface of a clean, annealed, 50% Cu-50% Ni alloy by auger electron spectroscopy*1
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1. First-known high-nuclearity copper-nickel carbonyl cluster: [CuxNi35-x(CO)(40)](5-) (with x= 3 or 5) containing an unprecedented 35-atom three-layer hcp triangular stacking metal-core geometry;Journal of Cluster Science;2001
2. Carbon deposition over transition metal alloys—II. Kinetics of deposition over 〈FeNi〉 and 〈FeCo〉 alloy foils;Carbon;1994
3. Surface segregation in Cu-Ni alloys;Physical Review B;1993-12-15
4. Adsorption of carbon monoxide over the ‘on-top’ sites of Ni, Cu and Ni–Cu surfaces. An extended Hückel molecular orbital study;J. Chem. Soc., Faraday Trans.;1992
5. Effect of carbonaceous species on the catalytic activity of copper—nickel in the hydrogenation of ethene;Applied Catalysis;1991-04
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