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Photoreactor m2 for Controlled Photoredox Catalysis

Control wavelength, light intensity, temperature, stirring, and reaction time in a single benchtop photoreactor designed for repeatable photochemistry workflows.

The Photoreactor m2 standardizes the core variables that affect photoredox catalysis, including photon flux, wavelength selection, reaction temperature, sample positioning, and mixing. By replacing variable lab setups with a defined system, researchers can run light-driven reactions under controlled, repeatable conditions. 

*Special academic pricing available.* 
Create an account with your academic institution credentials and use code m2EDU at checkout.
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    $4,900.00
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    Control the Key Variables That Influence Photoredox Catalysis

    Wavelength Selection

    Optimize reactions across multiple excitation conditions

    Light Intensity Control

    Maintain consistent irradiation conditions

    Fixed Reactor Geometry

    Improve experiment-to-experiment reproducibility

    Temperature Monitoring

    Enable precise thermal control

    Variable Stirring

    Support consistent mixing and reaction performance

    Programmable Timing

    Streamline experimental workflows
    TECHNICAL SPECIFICATION
    DESCRIPTION
    Model and System Type
    Photoreactor m2 benchtop photoreactor system for controlled photoredox catalysis and photocatalysis workflows
    Input Power and Electrical Requirements
    100–240 V AC, 50/60 Hz for standard laboratory environments
    LED Light Source and Wavelength Range
    Modular LED system with selectable wavelengths: 365 nm, 395 nm, 420 nm, and 450 nm for reaction-specific excitation
    Light Intensity and Photon Flux Control
    Adjustable light intensity for controlled irradiation and consistent photon exposure across experiments
    Reactor Geometry and Irradiation Chamber Design
    Fixed geometry with 360° reflective chamber for uniform light distribution and consistent sample positioning
    Temperature Monitoring and Thermal Feedback
    Integrated K-type thermocouple for real-time monitoring of reaction temperature
    Stirring Speed and Mixing Control
    Variable stirring from 100–2000 RPM for controlled mixing and mass transfer
    Reaction Time and Programmable Controls
    Digital control with programmable run time, auto stop, pause, and reset functions
    User Interface and Display
    3.5" TFT LCD touchscreen (320 × 480 resolution) for centralized control of reaction parameters
    Vial Compatibility and Parallel Reaction Capability
    Supports GC, 4 mL, 8 mL, 20 mL, and 40 mL vials for running parallel experiments under identical conditions
    Safety Features and Enclosure Design
    Enclosed light shield with interlock system for safe operation during photochemical irradiation
    Certifications and Laboratory Compliance
    ETL, CE, and CB certified for use in laboratory and research environments

    Photoreactor m2 FAQs

    How does the Photoreactor m2 improve reproducibility?

    The Photoreactor m2 improves reproducibility by controlling key reaction variables, including wavelength, light intensity, stirring, temperature monitoring, timing, and vial positioning within a fixed reactor geometry.

    What wavelengths are available for the Photoreactor m2?

    The Photoreactor m2 supports modular LED wavelength options, including 365, 395, 420, and 450 nm.

    Can the Photoreactor m2 run multiple samples at once?

    Yes. The system supports multiple vial formats, including GC, 4 mL, 8 mL, 20 mL, and 40 mL vials, allowing researchers to run parallel reactions under controlled conditions.

    What parameters can be controlled on the Photoreactor m2? 

    Researchers can control or monitor wavelength, light intensity, reaction time, stirring speed, temperature feedback, and sample positioning.

    Is the Photoreactor m2 safe for lab use?

    The Photoreactor m2 includes an enclosed light shield with an interlock and is listed with ETL, CE, and CB certifications.