Calomel Electrode: Structure, Composition, Properties

Calomel Electrode (Saturated)

The Calomel Electrode is a widely used secondary reference electrode. It is robust, easy to maintain, and provides a stable potential.

Structure and Composition

The electrode assembly consists of a glass tube (cell) designed to hold the necessary components. Key structural elements include:

  • A main compartment holding the internal elements.
  • Two side tubes: one is used for filling the saturated Potassium Chloride (KCl) solution, and the other forms a salt bridge to connect to another electrode system.
  • Pure Mercury (Hg) is placed at the very bottom of the main tube, ensuring reliable electrical connection.
  • Above the pure mercury is a layer of a paste made from Mercurous Chloride (Hg2Cl2, also known as Calomel) mixed with KCl solution.
  • A Platinum (Pt) wire is sealed into a glass tube and makes contact with the pure mercury, providing an external electrical circuit connection.
Diagram of a Calomel Electrode

Properties and Behavior

The electrode can act as either an anode or a cathode, depending on the relative potential of the coupled electrode.

  • Secondary Electrode: Its potential is determined relative to the Standard Hydrogen Electrode (SHE).
  • Concentration Dependent: Its potential is directly affected by the concentration of the KCl solution used.
  • Standard Potential: The standard electrode potential for the Saturated Calomel Electrode (SCE) is precisely 0.2415V at 25°C.

Cell Reactions

Depending on its role as anode or cathode, the electrode undergoes the following reactions:

2Hg + 2Cl → Hg2Cl2 + 2e
(Oxidation at the Anode)
Hg2Cl2 + 2e → 2Hg + 2Cl
(Reduction at the Cathode)

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