Voltammogram

A voltammogram is a plot of electric current versus applied electrode potential, produced during voltammetry to characterize electrochemical reactions and the substances undergoing them. As the potential is swept or stepped relative to a reference electrode, electroactive species are oxidized or reduced at a working electrode, and the resulting current changes form peaks or waves whose position and magnitude reflect reaction potential and analyte concentration. In chemistry, researchers use voltammograms to identify compounds, measure concentrations, study electron-transfer kinetics and mass transport, and evaluate catalytic or energy-storage materials. Interpreting background current, peak shape, and scan conditions helps distinguish chemical processes and assess electrochemical performance.

Voltammogram - Related Videos

Education

JoVE Core - Analytical Chemistry

Voltammograms: Overview

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2024

Voltammograms are current plots as a function of applied potential, offering insights into electrochemical systems. The shape of a voltammogram depends on how the current is measured and whether convection (heat transfer by fluid movement) is present or absent. Shapes of Voltammograms A voltammogram's shape reflects the analyte's behavior during the redox process. In the presence of convection, such as stirring in hydrodynamic voltammetry, the plot forms a sigmoid shape, where the current...

Cyclic Voltammetry (CV)

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2023

Source: Laboratory of Dr. Kayla Green — Texas Christian University A Cyclic Voltammetry (CV) experiment involves the scan of a range of potential voltages while measuring current. In the CV experiment, the potential of an immersed, stationary electrode is scanned from a predetermined starting potential to a final value (called the switching potential) and then the reverse scan is obtained. This gives a 'cyclic' sweep of potentials and the current vs. potential curve derived from the data is...

Research

JoVE Journal - Bioengineering

NiO Nanoflowers for Non-Enzymatic Amperometric Detection of Glucose

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2025

The primary objective of this article is to help researchers and scientists understand the process of glucose sensing using electrochemistry and to optimize parameters to maximize the glucose sensing response. The process of fabricating a glucose sensor is described in detail with guidelines for obtaining its best chronoamperometric response.

Structure Of Ferrocene

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2023

Source: Tamara M. Powers, Department of Chemistry, Texas A&M University In 1951, Kealy and Pauson reported to Nature the synthesis of a new organometallic compound, ferrocene.1 In their original report, Pauson suggested a structure for ferrocene in which the iron is singly bonded (sigma bonds) to one carbon atom of each cyclopentadiene ligand (Figure 1, Structure I).1,2,3 This initial report led to wide-spread interest in the structure of ferrocene, and many leading scientists participated...

Research

JoVE Journal - Biochemistry
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Protein Film Infrared Electrochemistry Demonstrated for Study of H2 Oxidation by a [NiFe] Hydrogenase

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Cited by 10 •

2017

Here, we describe a technique, protein film infrared electrochemistry, which allows immobilized redox proteins to be studied spectroscopically under direct electrochemical control at a carbon electrode. Infrared spectra of a single protein sample can be recorded at a range of applied potentials and under a variety of solution conditions.

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