Calomel (Hg/ Hg2Cl2) reference electrodes have a stable and well-defined potential, making them suitable for precise measurements. They exhibit low impedance and are insensitive to light, making them advantageous for various electrochemical applications.
Specification
| Model |
CCHN-6802 |
| Electrode Type |
Calomel (Hg/ Hg2Cl2) Reference Electrode |
| Reference Type |
Calomel Single Salt Bridge Type |
| Salt Bridge Material |
Ceramic Sand Core |
| Filling Liquid |
0.1mol/L KCl |
| Shell Material |
Glass |
| Temperature Range |
5℃~55℃ |
| Dimension |
φ12*120mm |
| Connector |
U-Shaped Fork Piece |
Dimension

Application

Tips: What are the types of reference electrodes?
Reference electrodes are crucial in electrochemical measurements, providing a stable potential against which the working electrode potential is measured. Common types include the Standard Hydrogen Electrode (SHE), offering a precise potential but impractical due to handling difficulties. The Ag/AgCl electrode is widely used in aqueous solutions, providing stability and ease of use. Another variant is the saturated calomel electrode (SCE), featuring a mercury-based redox system. Non-aqueous systems often employ the silver/silver ion electrode. Pseudo-reference electrodes, like the ferrocene/ferrocenium (Fc/Fc+) couple, offer advantages in organic solvents. Solid-state reference electrodes, such as those based on ion-conductive ceramics, present alternatives with enhanced durability. Choosing the appropriate reference electrode depends on the specific electrochemical system, considering factors like solvent, potential range, and experimental conditions.