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The reactions of ethanol over M/CeO2 catalysts: Evidence of carbon-carbon bond dissociation at low temperatures over Rh/CeO2
A Yee, S J Morrison, Hicham Idriss
School of Natural & Computing Sciences
Research output
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Contribution to journal
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Article
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peer-review
142
Citations (Scopus)
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Dive into the research topics of 'The reactions of ethanol over M/CeO2 catalysts: Evidence of carbon-carbon bond dissociation at low temperatures over Rh/CeO2'. Together they form a unique fingerprint.
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Engineering & Materials Science
Cerium oxide
100%
Ethanol
79%
Catalysts
66%
Carbon
59%
Temperature
31%
Temperature programmed desorption
17%
Acetaldehyde
8%
Dehydrogenation
7%
Infrared spectroscopy
7%
Precious metals
7%
X ray photoelectron spectroscopy
6%
Surface structure
6%
Desorption
6%
Activation energy
5%
Atoms
5%
Adsorption
5%
Metals
3%
Chemical Compounds
Dissociation
56%
Ethanol
50%
Desorption
45%
Catalyst
32%
Infrared Band
22%
Turnover Number
22%
Fourier Transform Infrared Spectroscopy
22%
Surface Composition
21%
Acetaldehyde
20%
Noble Metal
18%
Metal Atom
18%
Dehydrogenation
18%
Reduction
17%
Reaction Activation Energy
13%
Spectroscopy
12%
Ambient Reaction Temperature
10%
Adsorption
9%