
H-Type Membrane Single Channel Photoelectrochemical Cell – Sealed Type
H-Type Membrane Single Channel Photoelectrochemical Cell – Sealed Type
H-Type Membrane Single Channel Photoelectrochemical Cell – Sealed Type
Overview
- The SEC029-SS H-Type Single Channel Photoelectrochemical Cell is a compact, sealed glass cell designed for photoelectrochemical (PEC) and photocatalytic studies requiring precise light control and electrode separation.
- Constructed from borosilicate glass with a 24 mm quartz window, this cell provides exceptional optical clarity for illumination and spectroscopic studies. Its single optical channel enables focused photoelectrode testing, while the sealed H-type configuration maintains an isolated environment between the working and counter compartments via an ion-exchange membrane.
- With a simple yet durable design, it’s ideal for CO₂ reduction, hydrogen evolution, and semiconductor PEC testing where controlled reaction conditions are critical.
Key Features
- Single optical channel design: Allows targeted illumination for photoelectrode and PEC testing.
- Sealed dual-compartment structure: Prevents gas crossover and maintains chemical separation between anode and cathode chambers.
- Replaceable quartz window: High-quality quartz (Ø 24 mm) provides excellent UV–Vis light transmission and is easily replaced or cleaned.
- Corrosion-resistant materials: Borosilicate glass and PTFE ensure long-term durability in aggressive electrolyte environments.
- Easy maintenance: The modular structure enables quick disassembly for membrane or component replacement.
- Temperature and light adaptability: Compatible with controlled light sources and temperature setups for advanced PEC experiments.
Available Capacities / Variants
- 50 mL
- 100 mL
- 150 mL
- 250 mL
Customisation Options
ScienceGears provides tailored configurations of the H-Type Photoelectrochemical Cell to match specific experimental setups:
- Custom window diameters, thicknesses, or optical path lengths
- Additional electrode or gas inlet/outlet ports
- Integration with in-situ spectroscopy (Raman, UV–Vis, or FTIR)
- Adaptation for vertical or horizontal illumination setups
- Compatibility with different ion-exchange membranes (e.g. Nafion, Fumasep)
For custom designs, contact info@sciencegears.com.au with your experimental requirements.
Applications
- Photoelectrocatalysis and solar fuel generation
- CO₂ reduction and hydrogen evolution studies
- Semiconductor and thin-film PEC testing
- Photocatalytic degradation and water splitting
- Membrane-based dual-electrode photoelectrochemical research
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