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Metal Bipolar-plate Membrane electrode Electrolytic cell
Metal Bipolar-plate Membrane electrode Electrolytic cell
Metal Bipolar-plate Membrane electrode Electrolytic cell
Metal Bipolar-plate Membrane electrode Electrolytic cell
Metal Bipolar-plate Membrane electrode Electrolytic cell
Metal Bipolar-plate Membrane electrode Electrolytic cell

Metal Bipolar-plate Membrane electrode Electrolytic cell

Metal Bipolar-plate MEA Electrolytic Cell (Titanium)

Description

Built around high-purity metal plates (typically titanium), this MEA cell emphasizes electrical/thermal conductivity and mechanical strength for sustained operation at elevated current densities. Standard active areas include 10×10, 20×20, 30×30, and 50×50 mm with serpentine or parallel channels; gold-plated copper collectors are available in selected configurations to reduce contact resistance. Hardware options include double O-ring sealing and ports for temperature monitoring or heating, enabling tightly controlled test conditions for alkaline AEM electrolysis, PEM studies, and CO2RR. The modular architecture supports swapping channel plates or materials (e.g., nickel variants for specific chemistries) to align with durability and corrosion-resistance goals. This platform is ideal for researchers comparing catalyst layer performance across load cycles or optimizing water/gas management under practical current densities.

Specifications

  • The flow channel Specification: 10*10mm; 20*20mm; 30*30mm; 50*50mm, or other customized flow field size.
  • Cell material: High-purity titanium, or High-purity nickel plate.
  • Terminal material: Gold-plated Copper

 Features

  • This cell is mainly used for research analysis of electrochemical carbon dioxide reduction(CO2RR), alkaline anion exchange membrane water electrolysis and electrochemical processes.
  • The cell body is equipped with dual O-ring sealing grooves, it has excellent sealing performance.
  • The bipolar plate is equipped with heating and temperature measurement holes for electrochemical testing under temperature control conditions.
  • The overall material of the cell body is high-purity titanium, and the user also can choose high-purity nickel plates, which can be used for electrochemical testing in special environments.
  • The reactor can be designed with the type of serpentine, parallel or leaf vein channel, we also support other customised channel types such as spiral, mesh, comb, etc.


For further information or to discuss your specific research requirements, please contact us.

Technical Specifications

Precision engineering for accurate measurements

Flow channel10*10mm; 20*20mm; 30*30mm; 50*50mm, or other customized flow field size.
Cell materialHigh-purity titanium, or High-purity nickel plate.
Terminal materialGold-plated Copper

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