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The decomposition of formic acid on Ni(100)
J. B. Benziger
, Robert J. Madix
Chemical & Biological Engineering
High Meadows Environmental Institute
Keller Center for Innovation in Engineering Education
Princeton Materials Institute
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peer-review
122
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Keyphrases
(100) Surfaces
25%
Anhydride
50%
Attractive Interaction
25%
Autocatalytic
25%
Autocatalytic Reaction
25%
Clean Surface
25%
CO2 Adsorption
25%
CO2 Desorption
25%
Coincident Peak
25%
Crystal Plane
25%
Decomposition Reaction
25%
Dehydration
25%
Desorbed
50%
Desorption
50%
Dipole Moment
25%
Dipole-dipole Interaction
25%
Experimental Error
25%
Formate Intermediate
25%
Formic Acid
25%
Formic Acid Decomposition
100%
H2 Adsorption
25%
Interaction Potential
50%
Local Surface
25%
Low-temperature Adsorption
25%
Oxide Surfaces
25%
Oxides
25%
Room Temperature
25%
Saturation Coverage
25%
Single Crystal Surfaces
25%
Stable Surface
25%
Structural Difference
25%
Surface Concentration
25%
Surface Oxide
25%
Chemistry
Ambient Reaction Temperature
16%
Anhydride
16%
Autocatalysis
16%
Carbon Dioxide
100%
Chemical Decomposition
16%
Chemical Kinetics Characteristics
16%
Desorption
50%
Dipole Interaction
16%
Dipole Moment
16%
Formate
16%
formation
16%
Formic Acid
100%
Formic Anhydride
16%
Oxide
50%
Single Crystal Surface
16%
Chemical Engineering
Autocatalysis
20%
Carbon Dioxide
100%
Carbon Dioxide Capture
20%
Chemical Kinetics Characteristics
20%
Desorption
60%
Formate
20%
Formic Acid Decomposition
20%
Oxide
60%