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Jacketed Photoelectrochemical Cell – Unsealed Type
Jacketed Photoelectrochemical Cell – Unsealed Type

Jacketed Photoelectrochemical Cell – Unsealed Type

Jacketed Photoelectrochemical Cell – Unsealed Type

Jacketed Photoelectrochemical Cell – Unsealed Type

Overview

  • The Jacketed Photoelectrochemical Cell (Unsealed Type) is purpose-built for photoelectrochemical (PEC) and photocatalytic studies that require precise thermal management and optical clarity.
  • Constructed from borosilicate glass with a removable 24 mm quartz window, the cell offers excellent light transmission and chemical resistance.
  • The integrated water-circulation jacket allows researchers to maintain a stable temperature during light-assisted electrochemical reactions, making it ideal for photoelectrocatalysis, CO₂ reduction, and hydrogen evolution experiments.
  • Its open-top, unsealed configuration provides flexibility for electrode insertion, gas sampling, and solution replacement — making it a versatile choice for dynamic experimental setups and educational demonstrations.


Key Features

  • Temperature-controlled jacket: Integrated glass jacket enables precise water or coolant circulation for consistent temperature regulation.
  • Quartz window (Ø 24 mm): Provides high optical transmission for UV–Vis or solar illumination experiments.
  • Open, unsealed design: Simplifies electrode handling, electrolyte exchange, and experimental adjustments.
  • Replaceable components: Quartz window can be easily removed for cleaning or replacement.
  • Corrosion-resistant construction: Glass and PTFE components ensure long-term durability in harsh electrolyte environments.
  • Modular and accessible structure: Suitable for rapid setup, cleaning, and method optimisation.


Available Capacities / Variants

  • 50 mL
  • 100 mL
  • 150 mL


Customisation Options

ScienceGears provides a range of customisation options to adapt the specific research needs, including:

  • Alternative quartz window diameters or optical thicknesses
  • Modified jacket fittings compatible with different temperature control systems
  • Additional electrode or reference ports
  • Optical path alignment for in-situ Raman or UV–Vis spectroscopy
  • Adaptations for semi-sealed or gas-handling configurations

For tailored designs, contact info@sciencegears.com.au with your experimental details.


Applications

  • Photoelectrocatalysis and solar fuel generation
  • CO₂ reduction and hydrogen evolution studies
  • Semiconductor and thin-film PEC analysis
  • Photocatalytic degradation and oxidation experiments
  • Educational and research demonstrations involving light-assisted electrochemistry

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