The Oakton, by Cole-Parmer ion-selective electrode (ISE) for surfactant ions is a practical, space-saving solution ideal for accurate ion detection in laboratory or field settings. Designed for ease of use and reliable performance, this double-junction electrode eliminates the need for a separate reference electrode.
Product Features
- Cost-effective and user-friendly electrode for compact lab and field environments
- Surfactant (X⁺/X⁻) ion-selective electrode with glass or durable epoxy body
- Double-junction combination design requires no external reference electrode
- Includes 15-mL bottle of reference solution, reference filling pipette, 1-m cable, Bnc connector, and instruction manual
- Solid-state version comes with twelve polishing strips for routine maintenance
- Epoxy-body electrodes resist contamination with silver-free outer reference chamber—perfect for portable use
- Glass-body electrodes feature improved seals for enhanced performance in laboratory setups
- Refillable outer junctions allow customization for low-concentration measurements using special reference solutions
- Compatible with meters that provide 0.1 mV resolution for high-accuracy readings
Benefits
- Space-saving and integrated – fits in small setups where separate sensing and reference electrodes won’t
- Precise surfactant ion detection – ideal for titrations and continuous monitoring applications
- Durability – epoxy and glass options available to suit both rugged field use and delicate lab environments
- Low maintenance – polishing strips and refillable design extend electrode life
- All-in-one package – comes ready with accessories for immediate deployment
Why Choose the Oakton, by Cole-Parmer Ion-Selective Electrode Surfactant Double-Junction?
Whether you’re monitoring surfactant ions in field conditions or performing accurate titrations in a lab, this electrode offers the perfect blend of convenience, precision, and durability. With its double-junction design and included accessories, the Oakton surfactant ISE ensures reliable results across a variety of analytical applications.
