Keyphrases
Electrocatalysis
100%
Metallo
100%
Corrole
100%
Oxygen Reduction
100%
Tris
50%
Aminophenyl
50%
Cobalt
40%
Alkaline Solution
20%
Catalytic Site
20%
Enhanced Selectivity
10%
Oxygen Reduction Reaction
10%
Tertiary Amine
10%
Raman Spectroscopy
10%
Reaction Mechanism
10%
Enhanced Stability
10%
Amino
10%
Secondary Amines
10%
High Electrocatalytic Activity
10%
Synergistic Effect
10%
Polyaniline (PANi)
10%
Non-precious Metal Catalyst
10%
Molecular Catalyst
10%
Polymerized
10%
Microscopic Techniques
10%
Low Turnover
10%
Unique Structure
10%
Acidic Solution
10%
Polymerization Mechanism
10%
Polymeric Structure
10%
Primary Amines
10%
Acidic Conditions
10%
Catalytic Center
10%
Site Density
10%
Half-wave Potential
10%
Glassy Carbon Electrode
10%
Phenazine
10%
Improved Activity
10%
Pentafluorophenyl
10%
Dihydrophenazine
10%
Substituted Porphyrins
10%
Turnover Frequency
10%
Biomimetic Approach
10%
Polymerization Reaction
10%
Electrocatalytic Oxygen Reduction Reaction
10%
Growth Density
10%
Attenuated Total reflectance-Fourier Transform Infrared Spectroscopy (ATR-FTIR)
10%
Growth Structure
10%
Acid Solution
10%
Alkaline Condition
10%
Polymerization Conditions
10%
Electropolymer
10%
Number of Electrons
10%
Iron-Cobalt
10%
Chemistry
Oxygen Reduction Reaction
100%
Electrocatalysis
100%
Corrole
100%
Cobalt
50%
Tris
50%
Polymerization
20%
Electrochemistry
10%
Tertiary Amine
10%
Raman Spectroscopy
10%
Secondary Amine
10%
Electrocatalytic Activity
10%
Metal Catalyst
10%
Alkaline Condition
10%
Primary Amine
10%
Porphyrin
10%
Acidic Solution
10%
Turnover Frequency
10%
Acidic Condition
10%
Attenuated Total Reflectance Fourier Transform Infrared Spectrometry
10%
Half-Wave Potential
10%
Polymerization Reaction
10%
Phenazine
10%
Monomer
10%
Material Science
Electrocatalysis
100%
Cobalt
100%
Polymerization
60%
Density
40%
Raman Spectroscopy
20%
Glassy Carbon
20%
Attenuated Total Reflectance-Fourier Transform Infrared Spectroscopy
20%
Polyaniline
20%
Chemical Engineering
Polymerization
100%
Precious Metal
33%
Porphyrin
33%