Cell structure for XRD and accelerator-based analysis
XRD Application Systems
In-Situ Flow Electrochemical Cell (ISFEC)
A flow-type electrochemical cell for in-situ and in-operando electrochemical reaction measurements in XRD and accelerator-based analysis environments.
ISFEC is configured to flow a liquid electrolyte or reaction solution through the cell so researchers can observe precursor changes, reaction intermediate formation, and final material generation in real time. It can also be used without fluid flow as a cell for aqueous batteries, electrode reactions, and electrochemical property analysis.

Highlights
ISFEC is configured to flow a liquid electrolyte or reaction solution through the cell so researchers can observe precursor changes, reaction intermediate formation, and final material generation in real time. It can also be used without fluid flow as a cell for aqueous batteries, electrode reactions, and electrochemical property analysis.
Supports both Flow and Static measurement modes
Three-electrode electrochemical measurement configuration
Chemical-resistant materials with Viton O-ring sealing
Compact structure integrated with a small stage
Application / Use Case
In-situ / in-operando electrochemical reaction analysis
01
In-situ / in-operando XRD electrochemical analysis
02
Accelerator-based electrochemical reaction analysis
03
Real-time observation of precursor reactions and material formation
04
Aqueous battery and electrode reaction analysis
05
Electrochemical reaction studies under electrolyte flow conditions
06
Reaction mechanism analysis for catalysts, electrode materials, and energy materials
07
Liquid-phase reaction analysis using a flow-cell configuration

Technical Highlights
ISFEC is configured to flow a liquid electrolyte or reaction solution through the cell so researchers can observe precursor changes, reaction intermediate formation, and final material generation in real time. It can also be used without fluid flow as a cell for aqueous batteries, electrode reactions, and electrochemical property analysis.
Measurement Concept
Measurement Concept
Designed to perform electrochemical reactions and X-ray analysis at the same time, enabling linked analysis of structural changes and electrochemical signals during reaction.
Operating Modes
Operating Modes
Flow mode supports observation of precursor, reaction intermediate, and product changes under liquid-flow conditions. Static mode supports use as an aqueous battery or general electrochemical cell without fluid flow.
Electrode Configuration
Electrode Configuration
Based on a three-electrode system with Working Electrode, Counter Electrode, and Reference Electrode. Electrode specifications can be changed by experiment purpose.
Material / Sealing
Material / Sealing
Uses Aluminum, Stainless Steel, PI, PEEK, and Viton O-ring sealing to account for structural rigidity, corrosion resistance, insulation, chemical resistance, and leak prevention.
Optional Specs
A flow-type electrochemical cell for in-situ and in-operando electrochemical reaction measurements in XRD and accelerator-based analysis environments.
| Product Name | In-Situ Flow Electrochemical Cell |
|---|---|
| Purpose | In-situ / in-operando electrochemical measurement for XRD and accelerator applications |
| Measurement Modes | Flow mode / Static mode |
| Analysis Scope | Precursor reaction observation, material formation observation, aqueous battery property analysis |
| Electrode Configuration | Three-electrode system |
| Working Electrode | AFE5T050GC, PINE |
| Counter Electrode | CE-200, EC-Frontier |
| Reference Electrode | MiniHydroflex, Gaskatel |
| Electrode Changes | Available on request |
| Dimensions | W112 x D70 x H99 mm, including stage |
| Weight | 600 g or more, including stage |
| Main Materials | Aluminum, Stainless Steel, PI, PEEK |
| Sealing Method | O-ring |
| O-ring Material | Viton |
| Applicable Fluids | Liquid electrolyte / reaction solution |
| Applications | In-situ XRD, in-operando analysis, electrochemical reaction analysis, aqueous battery analysis |
Product Inquiry
Align equipment scope with experiment conditions
Discuss installation constraints, sample formats, and test conditions in the same workflow.