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Theoretical study of water cluster catalyzed decomposition of formic acid
Satoshi Inaba
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Corresponding author for this work
School of International Liberal Studies
Research output
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Article
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peer-review
34
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Chemical Compounds
Catalytic Decomposition
82%
Formic Acid
62%
Molecular Cluster
45%
Proton
24%
Molecule
24%
Reaction Activation Energy
18%
Decarboxylation
16%
Potential Barrier
14%
Tunneling
11%
Dehydration
9%
Simulation
6%
Transition State Theory
6%
Hydrogen Atom
4%
Catalyst
4%
Transition State
4%
Oxygen Atom
4%
Carbon Dioxide
4%
Wavelength
3%
Donor
3%
Hydrogen
2%
Reduction
2%
Physics & Astronomy
formic acid
100%
decomposition
53%
water
40%
molecules
28%
decarboxylation
21%
protons
18%
activation energy
15%
dehydration
10%
catalysts
7%
reaction kinetics
7%
de Broglie wavelengths
6%
relay
4%
oxygen atoms
4%
carbon dioxide
4%
hydrogen atoms
3%
simulation
3%
computer programs
3%
products
2%
hydrogen
2%
geometry
2%
interactions
1%