Electro-oxidation of ascorbic acid catalyzed on cobalt hydroxide-modified glassy carbon electrode
Электроокисление аскорбиновой кислоты, катализируемое на стеклоуглеродном электроде, модифицированном гидроксидом кобальта
2009-01-01
SCID: 54.1/576heej8
Discuss with AI
Ascorbic acidCatalytic EC mechanismCobalt hydroxide-modified electrodeElectro-oxidationGlassy carbon electrode
Figures from the paper
Abstract (AI)
The electrochemical behavior of ascorbic acid on a cobalt hydroxide modified glassy carbon (CHM-GC) electrode in alkaline solution was investigated. The process of the involved oxidation and its kinetics were established using the cyclic voltammetry, chronoamperometry techniques, as well as by steady state polarization measurements. The results revealed that cobalt hydroxide promotes the rate of oxidation by increasing the peak current; hence ascorbic acid is oxidized at lower potentials, which is thermodynamically more favorable. The cyclic voltammograms and chronoamperometry indicate a catalytic EC mechanism is operative with the electrogeneration of Co(IV) as the electrochemical process. Also, the process is diffusion-controlled and the current- time responses follow Cottrellian behavior. This result was confirmed by steady state measurements. The rate constants of the catalytic oxidation of ascorbic acid and the electron-transfer coefficient are reported.
Key Findings
1
Cobalt hydroxide modification increases the peak current for ascorbic acid oxidation on glassy carbon electrodes.
2
Cyclic voltammetry and chronoamperometry support a catalytic EC mechanism involving electro-generated Co(IV).
3
The catalytic oxidation process is diffusion-controlled, with chronoamperometric responses following Cottrellian behavior and confirmed by steady-state polarization.
4
The cobalt hydroxide-modified electrode enables ascorbic acid oxidation at lower potentials, making the process thermodynamically more favorable.
5
The study reports the catalytic oxidation rate constant and electron-transfer coefficient for ascorbic acid.
Research Object
ascorbic acid electro-oxidation on a cobalt hydroxide-modified glassy carbon electrode in alkaline solution
Research Subject
oxidation kinetics and catalytic EC mechanism, including Co(IV) electrogeneration, diffusion control, and electron-transfer parameters
Publication Details
Publication Date
2009-01-01
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest