Keyphrases
Comparative Analysis
100%
Escherichia Coli
100%
CO2 Reduction Reaction (CO2RR)
100%
Formate Dehydrogenase
100%
Selenocysteine
100%
Cysteine Modification
100%
Metal-dependent
57%
Molybdenum
28%
Oxidation State
28%
Renewable Energy
14%
Tungsten
14%
Nitrate
14%
Cysteine
14%
Reduction Reaction
14%
Nucleophilic
14%
Azides
14%
Highly Active
14%
Metal Structure
14%
Acid Tolerance
14%
Biocatalyst
14%
Kinetic Analysis
14%
Substitution Effect
14%
Carbon Reduction
14%
Low Redox Potential
14%
Active Site Structure
14%
Reduction Rate
14%
Destabilizing Effect
14%
Rapid Transition
14%
Commodity Chemicals
14%
Fossil-free
14%
Substitution Analysis
14%
Rational Protein Engineering
14%
Mo(VI)
14%
Structural Homologs
14%
Strong Inhibition
14%
Electrochemical Applications
14%
Electrocatalytic CO2 Reduction
14%
INIS
reduction
100%
carbon dioxide
100%
dehydrogenases
100%
escherichia coli
100%
cysteine
100%
formates
100%
metals
50%
enzymes
25%
residues
25%
molybdenum
25%
oxidation state
25%
applications
12%
production
12%
renewable energy sources
12%
carbon
12%
substrates
12%
inhibition
12%
tolerance
12%
kinetics
12%
electrochemistry
12%
ligands
12%
fossils
12%
catalysts
12%
redox potential
12%
tungsten
12%
atoms
12%
ph value
12%
nitrates
12%
cathodes
12%
serine
12%
protein engineering
12%
azides
12%
commodities
12%
Chemistry
Carbon Dioxide Reduction
100%
Selenocysteine
100%
Cysteine
100%
Formate Dehydrogenase
100%
Selenocysteine Residue
28%
Redox Potential
14%
Azide
14%
Molybdenum
14%
Biocatalyst
14%
Kinetic Method
14%
Molybdenum Atom
14%
Serine
14%
Carbon Dioxide
14%
Material Science
Carbon Dioxide
100%
Cysteine
100%
Molybdenum
25%
Tungsten
12%
Cathode
12%
Biocatalyst
12%
Serine
12%