Control the Key Variables That Influence Photoredox Catalysis
Wavelength Selection
Light Intensity Control
Fixed Reactor Geometry
Temperature Monitoring
Variable Stirring
Programmable Timing
Photoreactor m2 FAQs
How does the Photoreactor m2 improve reproducibility?
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?
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?
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?
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?
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.