In-situ Raman Spectroelectrochemical Cell – REC 04
In-situ Raman Spectroelectrochemical Cell – REC 04
In-situ Raman Spectroelectrochemical Cell – REC 04

In-situ Raman Spectroelectrochemical Cell – REC 04

In-situ Raman Spectroelectrochemical Cell

In-situ Raman Spectroelectrochemical Cell – REC 04

n-situ Raman Spectroelectrochemical Cell

Model

REC 04

Material

  • Cell: PTFE
  • Window plate: Sapphire
  • Flow gas channel design ensures the uniform gas diffusion and the circulation flow of electrolyte
  • A cell includes: Platinum Wire counter electrode*1; Ag/AgCl reference electrode*1
  • The working electrode can be carton paper or the other none-self-leakage material( the user prepare it).

Feature

  • Flow gas channel design ensures the uniform gas diffusion and the circulation flow of electrolyte
  • A cell includes: Platinum Wire counter electrode*1; Ag/AgCl reference electrode*1
  • The working electrode can be carton paper or the other none-self-leakage material( the user prepare it).

In-situ Raman Electrochemical Cell

1. The model SEC073 In-situ Raman electrochemical cell is designed to study the in-situ spectral and morphological changes of electrode materials in electrochemical experiments. The working electrode (WE) is placed directly below the perspective window so that the optical instrument can observe the working electrode through the quartz window.

2. The electrochemical cell has three chambers: gas chamber, working electrode chamber and counter electrode chamber. The three chambers are isolated from each other by gas diffusion electrodes (prepared by the user) and ion membranes (prepared by the user) and are mainly used for in-situ Raman testing of gas diffusion electrodes.

Technical Specifications

Precision engineering for accurate measurements

External size87*70*20mm
Reaction area of working specimen10*10mm
Suitable installation size of working specimen15*15mm
Window pathØ40mm. Sapphire thickness 1mm
Distance between working area and Window3.5mm
Distance between the working electrode surface to Window bottom surface2.5mm

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