In-situ X-ray Absorption Spectroscopy Reaction Cell
In-situ X-ray Absorption Spectroscopy Reaction Cell
In-situ X-ray Absorption Spectroscopy Reaction Cell

In-situ X-ray Absorption Spectroscopy Reaction Cell

$1449.79
item_No
Specifications
Price
MA-EN-BE-008001
XAFS-1 (Single Chamber Type)
$1449.79

Details

Product Instructions & Recommendations

Model: XAFS

This is an in-situ electrochemical reaction cell designed for synchrotron X-ray absorption spectroscopy measurements.

Main Features

  • The main cell body is made of PEEK, and the internal volume can be customized according to customer requirements.
  • The device supports both two-electrode and three-electrode systems. The working electrode is custom-fabricated, while the other two electrodes can be configured as requested by customers.
  • Gas inlet and outlet ports are integrated on the cell body to meet various atmospheric conditions and airtightness requirements for electrochemical reactions.

Model Differences

  • XAFS-1: Single-chamber configuration
  • XAFS-2: H-type dual-chamber configuration
  • XAFS-3: Electrode-free, for pure gas-phase testing only
  • XAFS-4: Gas diffusion type
  • Optical window material: Kapton film (to be supplied by users)

Model: XAFS-4

  • The electrolytic cell adopts an efficient gas diffusion design to guarantee uniform transport of reaction gas, improving experimental response speed and stability.
  • Wide-angle Kapton window: Kapton film is used as the viewing window, delivering an ultra-wide 120° angular range and larger window area to greatly boost observation and detection performance.
  • Optimized electrode gap design: The distance between the Kapton film and gas diffusion electrode is minimized to effectively enhance signal sensitivity and real-time monitoring accuracy.
  • Replaceable chamber structure: The gas diffusion chamber can be flexibly swapped with a transparent chamber to accommodate diverse electrochemical characterization tests and expand applicable scenarios.
  • Compatibility with classic structures: Retains single-cell and H-type membrane-replaceable structures, compatible with conventional electrolytic cells.