In-Situ Raman Pressure Battery Test Cell Model: RM-P2E
In-Situ Raman Pressure Battery Test Cell Model: RM-P2E
In-Situ Raman Pressure Battery Test Cell Model: RM-P2E

CNB-12-RM-P2E

In-Situ Raman Pressure Battery Test Cell Model: RM-P2E

Regular price $5,800.00
/
Shipping calculated at checkout.
Model

RM-P2E In-Situ Raman Pressure Battery Test Cell

A sealed two-electrode cell for in-situ Raman monitoring during battery cycling under pressurized or vacuum conditions.

Product Overview

The RM-P2E is a sealed two-electrode battery test cell integrating in-situ Raman measurement with electrochemical cycling under controlled pressure or vacuum conditions. Its sapphire optical window and short sample-to-window distance facilitate Raman signal collection, while the titanium cell body, PEEK insulation, and O-ring sealing provide chemical resistance and reliable airtightness. Designed for battery materials research, it supports real-time monitoring of structural and interfacial changes during charge/discharge testing at pressures up to 1 MPa. Vacuum operation is supported by replacing the pressure gauge with a compatible vacuum gauge.

Key Features

• In-situ Raman Monitoring
Enables real-time Raman characterization of electrode materials during battery charge/discharge operation

• Pressure/Vacuum Operation
Supports electrochemical cycling under controlled pressure or vacuum conditions with interchangeable gauges

• Glovebox-Compatible Sealing
Provides reliable airtight sealing for glovebox assembly and subsequent operation under ambient conditions

Technical Specifications

Electrode configuration Two-electrode system
Sample-to-window distance < 2 mm
Optical window diameter Ø20 mm
Effective optical window diameter Ø12 mm
Maximum pressure 1 MPa
Optical window material Sapphire
Cell body material Ti
Insulation material PEEK
Current collector tab Gold-plated copper
Cell body dimensions Ø70 mm × H30 mm

Instrument Compatibility

• Raman System Compatibility
Compatible with commercial Raman microscope systems, including Renishaw (inVia) and HORIBA (LabRAM Soleil Nano)

• Electrochemical Testing Compatibility
Compatible with commercial electrochemical workstations, including CH Instruments (CHI660E), and battery testing systems, including NEWARE (CT-4008T)

Related Published Application

In-situ Raman Tracking of Stepwise Polyiodide Conversion

The cell used in this study, supplied by Beyond Battery under product code RM-2E, was coupled with a Renishaw inVia Raman microscope using 532 nm excitation and a CHI660E workstation to investigate KB–I₂ cathodes in aqueous Zn–I₂ batteries. During galvanostatic cycling, in-situ Raman spectra tracked I₃⁻ and I₅⁻ intermediates, revealing that ectoine promoted a stepwise I₅⁻ → I₃⁻ → I⁻ conversion pathway while suppressing polyiodide shuttling.

Demonstrated Capabilities of the Base RM-2E Configuration

  • Simultaneous Raman acquisition and galvanostatic cycling
  • Real-time differentiation of I₃⁻ and I₅⁻ intermediates
  • Electrolyte-dependent tracking of iodine conversion pathways

Application Studies

Application studies using this model are currently underway.