Catalyst Surface: Physical Methods of StudyingKhabib Minachevich Minachev, E. S. Shpiro Translated from the Russian original (Mir Publishers, 1990). Provides an analysis and overview of studies of catalyst surfaces by electron emission spectroscopy and ion spectroscopy, based on both the editors' research and data that appeared in Soviet and foreign publications after 1980. Gives the f |
Contents
Instrumentation and Experimental Procedures | 51 |
The Use of Electron Emission and Ion Spectroscopies for Studying | 87 |
The Study of Heterogeneous Catalysts by Electron Emission and Ion Spec | 133 |
Copyright | |
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adsorbed adsorption alkenes alloys analysis analyzing Antoshin appraising atoms Auger electron bimetal binding energy bond bulk calcination Catal catalysts catalytic activity catalytic properties cations centers charge Chem chemical shifts chemisorption clusters components compounds copper core levels degree of reduction density depends determined effect electron structure elements EXAFS faujasites Fermi level films forbidden band formation H₂ highly dispersed hydrodesulfurizing hydrogen hydrogenolysis increase initial intensity intermetallics metal metal-support interaction migration Minachev monolayer MoO3 observed obtained outer surface oxide oxygen parameters particles peak pentasil phase photoelectron quantitative ratio reaction Rh/TiO2 ruthenium secondary ion Shpiro SIMS SiO2 specimens spectra spectrometer spectroscopy spectrum sputtering studying Surf surface composition surface concentration surface layer surface segregation techniques temperature Ti³ TiO2 tion torr transition treatment vacuum valence band values X-ray XPS data zeolite