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Cyclic voltammetry (CV) is an electrochemical technique used to investigate the redox properties of a chemical species. It involves measuring the current response of an electrochemical cell as a function of the applied potential. The setup for cyclic voltammetry typically consists of a working electrode, a reference electrode, and a counter electrode—all immersed in an electrolyte solution. The working electrode is where the redox reaction of interest occurs, while the reference electrode provides a stable potential reference, and the counter electrode completes the circuit for the current flow.

The process begins by setting a starting potential at the working electrode, usually at the point where no electrochemical reaction occurs. The potential is then linearly ramped in one direction until it reaches a preset value. At this point, the direction of the potential sweep is reversed, moving back toward the initial potential. When the applied potential causes an electrochemical reaction (either oxidation or reduction) at the electrode surface, it results in current flow. The resulting cyclic voltammogram plots current versus applied potential, showing anodic and cathodic peaks. Anodic peaks correspond to the oxidation process, while cathodic peaks represent the reduction process.

From Chapter 10:

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10.22 : Voltammetric Techniques: Cyclic Voltammetry

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10.1 : Electrochemistry: Overview

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10.2 : Electrodes: Overview

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10.3 : Interfacial Electrochemical Methods: Overview

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10.4 : Potentiometry: Overview

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10.5 : Potentiometry: Types of Electrodes

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10.6 : Potentiometry: Membrane Electrodes

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10.7 : Redox Titration: Overview

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10.8 : Redox Titration: Iodimetry and Iodometry

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10.9 : Redox Titration: Other Oxidizing and Reducing Agents

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10.10 : Potentiometric Titration: Overview

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10.11 : End Point Prediction: Gran Plot

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10.12 : Electrogravimetric Analysis: Overview

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10.13 : Coulometry: Overview

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10.14 : Controlled-Potential Coulometry: Electrolytic Methods

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