Cyclic voltammetry and chronoamperometry: mechanistic tools for organic electrosynthesis
Циклическая вольтамперометрия и хроноамперометрия: механистические инструменты для органического электросинтеза
2023-12-05
SCID: 54.1/q8pza3gk
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EC reactionschronoamperometrycyclic voltammetryorganic electrosynthesisrotating disk electrodes
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Abstract (AI)
Electrochemical methods offer unique advantages for chemical synthesis, as the reaction selectivity may be controlled by tuning the applied potential or current. Similarly, measuring the current or potential during the reaction can provide valuable mechanistic insights into these reactions. The aim of this tutorial review is to explain the use of cyclic voltammetry and chronoamperometry to interrogate reaction mechanisms, optimize electrochemical reactions, or design new reactions. Fundamental principles of cyclic voltammetry and chronoamperometry experiments are presented together with the application of these techniques to probe (electro)chemical reactions. Several diagnostic criteria are noted for the use of cyclic voltammetry and chronoamperometry to analyze coupled electrochemical-chemical (EC) reactions, and a series of individual mechanistic studies are presented. Steady state voltammetric and amperometric measurements, using microelectrodes (ME) or rotating disk electrodes (RDE) provide a means to analyze concentrations of redox active species in bulk solution and offer a versatile strategy to conduct kinetic analysis or determine the species present during (electro)synthetic chemical reactions.
Key Findings
1
Cyclic voltammetry and chronoamperometry provide mechanistic insights that can guide reaction analysis, optimization, and new reaction design.
2
Diagnostic criteria from cyclic voltammetry and chronoamperometry enable analysis of coupled electrochemical–chemical (EC) reaction mechanisms.
3
Electrochemical synthesis selectivity can be controlled by tuning the applied potential or current.
4
Microelectrode and rotating-disk-electrode measurements support kinetic analysis and identification of species formed during electrochemical synthesis.
5
Steady-state measurements with microelectrodes or rotating disk electrodes can quantify redox-active species in bulk solution.
Research Object
Organic electrosynthesis reactions and their coupled electrochemical-chemical (EC) reaction systems
Research Subject
Reaction mechanisms, selectivity, kinetics, and redox-active species involved in these reactions
Publication Details
Publication Date
2023-12-05
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