Photochemical processes reactor LightSyn Illumin8
for parallel synthesisbenchtopUV

photochemical processes reactor
photochemical processes reactor
photochemical processes reactor
photochemical processes reactor
photochemical processes reactor
photochemical processes reactor
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Characteristics

Applications
photochemical processes
Function
for parallel synthesis
Configuration
benchtop
Treatment method
UV
Number of reactions
multiple
Other characteristics
safe

Description

Asynt’s LightSyn Illumin8 parallel photoreactor is ideal for safe, benchtop parallel photochemistry.  Working closely with some of our key customers we took their “go to” tool for parallel screening, our OCTO parallel reactor, and developed a high powered LED photo array to compliment it.  Illumin8 is a no-compromise, safe, well-engineered module based on the DrySyn OCTO MINI 8-position reaction station with magnetic stirring and optional heating via any standard hotplate stirrer.. Our most popular models: • 8 x 450 nm (Blue) 10w LED COB chips • 8 x 365 nm (UV) 10w LED COB chips With the 10w LED COB chips positioned close to each corresponding OCTO Mini reaction tube, the Illumin8 efficiently delivers an even photon flux to each sample.  Compact in design, the module includes safety interlocks to ensure that your photochemical experiments are light-tight and safe with active cooling to keep the reaction tubes from getting too hot from photo irradiation. The LightSyn Illumin8 incorporates interchangeable light modules for flexible use in different Photochemical reactions, and a wide range of LEDs to choose from. Most popular LED modules; high power Blue 450 nm LEDs OR 365 nm LEDs. • Other wavelengths include: UVA LED 390-395 nm, Violet LED 405 nm, Royal Blue LED 440-450 nm, Blue LED 460-470 nm, Green LED 520-525 nm, Yellow LED 590-595 nm, Red LED 620-625 nm, Deep Red LED 650-660 nm. • Other wavelengths available upon request • Each reaction tube has a dedicated 10 w rated LED COB light source • 8 position photoreactor, utilising DrySyn OCTO parallel reactor • 8 x reaction volume from 1 mL to 8 mL • Even photon flux to each reaction

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