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The driving-force dependence of electrochemical rate parameters: Origins of anodic-cathodic asymmetries for metal-aquo redox couples
Joseph T. Hupp
, Michael J. Weaver
*
*
Corresponding author for this work
Chemistry
Research output
:
Contribution to journal
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Article
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peer-review
46
Scopus citations
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Dive into the research topics of 'The driving-force dependence of electrochemical rate parameters: Origins of anodic-cathodic asymmetries for metal-aquo redox couples'. Together they form a unique fingerprint.
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Keyphrases
Redox Couple
100%
Anodic
100%
Rate Parameters
100%
Force Constants
100%
Reduced State
66%
Oxidized State
66%
Activation Enthalpy
66%
Anodic Overpotential
66%
Tafel Plot
66%
Result Interpretation
33%
Structural Information
33%
Data Interpretation
33%
Activation Barrier
33%
Thermodynamic Data
33%
Aqueous Interfaces
33%
Harmonic Oscillator Model
33%
Mercury
33%
Activation Parameters
33%
Activation Entropy
33%
Homogeneous Reaction
33%
Enthalpy Approach
33%
Generalized Harmonic Oscillators
33%
Cathodic Overpotential
33%
Electrochemical Kinetics
33%
Intramolecular Forces
33%
Anodic Activation
33%
Chemistry
Force Constant
100%
Activation Enthalpy
66%
Oscillator Model
33%
Activation Entropy
33%
Harmonic Oscillator
33%
Material Science
Oscillator
100%