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Mechanisms of charge transfer at the chemically derivatized interface: The Ni/[Ni
II
(CN)Fe
II/III
(CN)
5
]
2-/1-
system as an electrocatalyst
Brian D. Humphrey
, Sujit Sinha
, Andrew B. Bocarsly
Chemistry and Biochemistry
Research output
:
Contribution to journal
›
Article
›
peer-review
145
Scopus citations
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Dive into the research topics of 'Mechanisms of charge transfer at the chemically derivatized interface: The Ni/[Ni
II
(CN)Fe
II/III
(CN)
5
]
2-/1-
system as an electrocatalyst'. Together they form a unique fingerprint.
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Keyphrases
Fe(II)
100%
Ni(II)
100%
Charge Transfer
100%
Redox Potential
100%
Electrocatalyst
100%
Electrocatalytic
60%
Supporting Electrolyte
40%
Fe3+
40%
Rate Limiting
40%
Nickel Electrode
20%
Surface Species
20%
Electrolyte Cations
20%
Electron Transfer Mechanism
20%
Proton
20%
Two-electron
20%
Ascorbic Acid
20%
Direct Analysis
20%
Pseudo-first-order Rate Constant
20%
One-electron Reduction
20%
Bimolecular
20%
Mediated Charge Transfer
20%
Oxidation Rate Constant
20%
Electrocatalytic System
20%
Lithium Nitrate
20%
Marcus Theory
20%
Ascorbic Acid Oxidation
20%
Chemistry
Rate Constant
100%
Redox Potential
100%
Electrocatalyst
100%
Supporting Electrolyte
40%
Ascorbic Acid
40%
Ascorbate
40%
Electron Transport
20%
electrode
20%
Chemical Engineering
Ascorbic Acid
100%