Entrar

Polarography is a classical voltammetric technique used to analyze electrochemical reactions. This method applies a linear potential sweep to a dropping mercury electrode (DME), and the resulting current is measured. A dropping mercury electrode is commonly used as the working electrode in polarography. It consists of a capillary tube filled with mercury, where the tiny droplet forms at the tip. This droplet continuously drops from the capillary, creating a new electrode surface for each measurement.

During a polarographic measurement, the potential applied to the DME varies linearly over time. As the potential changes, the electroactive species present in the solution undergo reduction or oxidation reactions at the electrode surface, depending on the applied potential. The resulting current is plotted against the potential, creating a current-potential curve known as the polarogram. Polarography has been used in various fields, including analytical chemistry, environmental analysis, and electrochemical research.

Hydrodynamic voltammetry differs from polarography in that a metal electrode is used instead of the mercury drop electrode as a solid working electrode. This technique applies a potential to the solid working electrode, and the resulting current is measured. A voltammogram is obtained by varying the potential over a specific range, which yields a current plot as a function of the applied potential. Unlike polarography, hydrodynamic voltammetry eliminates the current oscillations observed in polarograms due to the formation of mercury drops.

Tags

Voltammetric TechniquesLinear scanPolarographyElectrochemical ReactionsDropping Mercury ElectrodeDMECurrent potential CurvePolarogramAnalytical ChemistryEnvironmental AnalysisElectrochemical ResearchHydrodynamic VoltammetryVoltammogram

Do Capítulo 10:

article

Now Playing

10.20 : Voltammetric Techniques: Linear-Scan (E vs Time)

Electrochemical Analyses and Redox Titration

163 Visualizações

article

10.1 : Electrochemistry: Overview

Electrochemical Analyses and Redox Titration

535 Visualizações

article

10.2 : Electrodes: Overview

Electrochemical Analyses and Redox Titration

294 Visualizações

article

10.3 : Interfacial Electrochemical Methods: Overview

Electrochemical Analyses and Redox Titration

192 Visualizações

article

10.4 : Potentiometry: Overview

Electrochemical Analyses and Redox Titration

384 Visualizações

article

10.5 : Potentiometry: Types of Electrodes

Electrochemical Analyses and Redox Titration

360 Visualizações

article

10.6 : Potentiometry: Membrane Electrodes

Electrochemical Analyses and Redox Titration

286 Visualizações

article

10.7 : Redox Titration: Overview

Electrochemical Analyses and Redox Titration

586 Visualizações

article

10.8 : Redox Titration: Iodimetry and Iodometry

Electrochemical Analyses and Redox Titration

681 Visualizações

article

10.9 : Redox Titration: Other Oxidizing and Reducing Agents

Electrochemical Analyses and Redox Titration

183 Visualizações

article

10.10 : Potentiometric Titration: Overview

Electrochemical Analyses and Redox Titration

434 Visualizações

article

10.11 : End Point Prediction: Gran Plot

Electrochemical Analyses and Redox Titration

168 Visualizações

article

10.12 : Electrogravimetric Analysis: Overview

Electrochemical Analyses and Redox Titration

152 Visualizações

article

10.13 : Coulometry: Overview

Electrochemical Analyses and Redox Titration

131 Visualizações

article

10.14 : Controlled-Potential Coulometry: Electrolytic Methods

Electrochemical Analyses and Redox Titration

95 Visualizações

See More

JoVE Logo

Privacidade

Termos de uso

Políticas

Pesquisa

Educação

SOBRE A JoVE

Copyright © 2025 MyJoVE Corporation. Todos os direitos reservados