Origalys
Origaccess - Swagelok Cell Type - 3 electrodes Ø 12.7 mm
Origaccess - Swagelok Cell Type - 3 electrodes Ø 12.7 mm
The Origaccess Swagelok Cell Type – 3 Electrodes (Ø12.7 mm) is a compact, research‑grade electrochemical cell designed for advanced battery material testing. Its three‑electrode configuration allows researchers to independently monitor working, counter, and reference electrodes, enabling more accurate half‑cell analysis compared to traditional two‑electrode setups.
Built with a robust Swagelok‑style architecture, this cell provides excellent sealing, mechanical stability, and repeatable compression — essential for high‑quality electrochemical measurements in R&D environments.
Key Features
- Three‑Electrode Configuration Enables precise separation of working and counter electrode behavior for detailed half‑cell studies.
- Swagelok‑Style Construction Durable, leak‑resistant body designed for repeated assembly and long‑term laboratory use.
- Ø12.7 mm Electrode Compatibility Supports standard 12.7 mm (½‑inch) electrodes widely used in battery research.
- Ideal for Battery Material Evaluation Suitable for anode/cathode characterization, cycling tests, and electrochemical performance studies.
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Easy Assembly & Reusability Designed for quick setup, consistent compression, and thousands of reuse cycles.
Ideal Applications
- Lithium‑ion, sodium‑ion, and multivalent battery research
- Half‑cell and reference‑electrode studies
- Electrode material development
- Electrochemical performance benchmarking
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Academic and industrial battery R&D
Product Details
| Parameter | Value |
|---|---|
| Product Name | Origaccess – Swagelok Cell Type |
| Configuration | 3‑electrode |
| Electrode Diameter | Ø12.7 mm |
| Construction | Swagelok‑style, reusable |
| Application | Battery material testing & electrochemical research |
Why Researchers Choose This Cell
This Swagelok‑style three‑electrode cell offers the precision, durability, and flexibility required for modern battery research. Its stable compression and leak‑tight design ensure reproducible results making it a trusted tool for universities, research labs, and industry innovators.
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