





GT06 In-Situ Raman Spectroscopy Battery Test Cell – PEEK, 500MPa, Adjustable 6–20mm | Xnergy
SKU: XN-BM-GT06
$240.00
[Customize and modify as required]
GT06 In-Situ Raman Battery Test Cell — Raman test mold with side-section observation. Sleeve diameter 25 mm, assembly height 90 mm, inner diameter range 6–20 mm (adjustable), working pressure ≤ 500 MPa. Built with stainless steel, PEEK, and special steel. Can be customized and modified as required.
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Name: GT06 In-Situ Raman Battery Test Cell
Mold Type: Raman Test Mold with Side-Section Observation
Product Code: XN-BM-GT06
Description:
The GT06 is a Raman test mold with side-section observation. The mold features a sleeve diameter of 25 mm, an assembly height of 90 mm, and an adjustable inner diameter range of 6–20 mm. The GT06 is rated for a working pressure of ≤ 500 MPa and is built with stainless steel, PEEK (polyether ether ketone), and special steel. Can be customized and modified as required.
Application:
The GT06 is designed for laboratory in-situ Raman testing in battery research. The side-section observation geometry supports Raman spectroscopic measurements of the cell side during electrochemical cycling.
Specifications:
| Parameter | Value |
|---|---|
| Mold Type | Raman test mold with side-section observation |
| Sleeve Diameter | 25 mm |
| Assembly Height | 90 mm |
| Inner Diameter Range | 6 – 20 mm (adjustable) |
| Working Pressure | ≤ 500 MPa |
| Frame Material | Stainless steel |
| Insulating Sleeve Material | PEEK (polyether ether ketone) |
| Pushing Rod Material | Special steel |
| Customization | Available on request |
Values measured by Xnergy. Typical values for reference; not guaranteed unless otherwise specified.
Characteristics:
Side-section observation geometry
The GT06 features a side-section observation geometry, providing optical access to the cell side for Raman spectroscopic measurements during cycling.
Adjustable inner diameter range (6–20 mm)
The GT06’s inner diameter is adjustable across 6 mm to 20 mm, supporting a range of sample sizes within a single mold platform.
Working pressure ≤ 500 MPa
The GT06 is rated for a working pressure of ≤ 500 MPa.
PEEK insulating sleeve
The GT06 uses a PEEK (polyether ether ketone) insulating sleeve. PEEK is a high-performance thermoplastic with high dielectric strength and chemical stability against a wide range of chemicals.
Stainless steel frame and special-steel pushing rod
The GT06 frame is constructed from stainless steel and the pushing rod is fabricated from special steel.
Customization available on request
The GT06 can be customized and modified as required. Contact Xnergy for configuration options that match your specific research requirements.
Recommended Operating Procedure:
1. Clean all mold components with isopropyl alcohol or other suitable cleaning solvent before each use; dry thoroughly. 2. Apply a thin layer of vacuum grease or anti-seize compound between the pushing rod and the PEEK sleeve to reduce friction. 3. Assemble the cell components in their designated positions, ensuring the electrode surface of interest faces the side-section observation window. 4. Insert the pushing rod and apply pressure using a hydraulic press; do not exceed the rated working pressure of 500 MPa. 5. Tighten the locking screws on the frame to maintain stack pressure during transfer to the Raman microscope. 6. Position the assembled mold on the Raman microscope stage with the observation window aligned to the laser objective. 7. Perform Raman spectroscopic measurements together with electrochemical measurements as required. 8. After testing, release pressure gradually, disassemble, and clean all components before storage.
Packaging & Storage:
The GT06 ships with all components, including the stainless steel frame, PEEK insulating sleeve, special-steel pushing rods, side-section observation window assembly, sealing components, and assembly hardware. Store in a dry environment at room temperature, protected from dust and moisture. After each use, clean components with isopropyl alcohol, gently clean the observation window with optical-grade lens cleaner, and store in a clean, dry environment.
Safety:
For research and industrial laboratory use only. Do not exceed the maximum working pressure (500 MPa). Always wear appropriate PPE (safety glasses, chemical-resistant gloves, lab coat) when handling reactive materials and electrolytes. When working with reactive materials, follow standard laboratory safety protocols, including glovebox-based assembly when required. Follow standard Raman laser safety protocols including laser eye protection and proper laser interlocks. Refer to the included user manual for complete safety and operating instructions.
Note: Specifications listed above are typical and for reference only. Actual performance depends on the specific electrolyte, electrode material, and experimental conditions — consult published literature for guidance on specific in-situ Raman measurement protocols. For researchers exploring complete in-situ characterization workflows, see also Xnergy’s related products: GT16 End-Face Raman Testing Mold, GT17 Voltage-Stabilized Single-Stud Raman Testing Die, GT07 Monochrome X-Ray Battery Testing Mold, GT08 Microscopic Battery Test Mold, YT09 In-Situ Dendrite Observation Mold, GT01 Standard Solid-State Battery Mold, GT02 Standard Solid-State Battery Mold, GT03 High-Pressure Solid-State Battery Mold, GT04 Three-Electrode Solid-State Battery Mold, and GT05 Square Solid-State Battery Test Cell. Browse the full Battery Mold category for all configurations.










