• Parallel Photoreactor Provides Easy Interchangeable Wavelength Excitation
    The LightSyn Illumin8 with additional LED module.

Laboratory Products

Parallel Photoreactor Provides Easy Interchangeable Wavelength Excitation

Apr 11 2022

A new modular version of the popular LightSyn Illumin8 photoreactor has been introduced by Asynt.

Fast and flexible switching between a selection of high-power LEDS

This innovative system provides researchers with the flexibility to change quickly and safely between a selection of high-power light emitting diodes (LEDs) operating at wavelengths including UV (365 nm) and blue (450 nm).

Run up to 8 photochemical reactions in parallel

The LightSyn Illumin8 allows chemists to run up to 8 photochemical reactions in parallel using low-cost 8 mL tubes. Compact in size, this affordable yet high performance photoreactor offers up to eight interchangeable modules of eight UV or coloured LEDs with safety interlocks to ensure light-tight photochemical reactions. With each high-power LED positioned close to a corresponding reaction tube, the LightSyn Illumin8 efficiently delivers an even photon flux to each position, ensuring the consistency of your photochemical reactions. Integral active cooling also ensures that your reactions do not overheat from the photo irradiation.

Designed to replace 'homemade' photoreactor systems which offer inconsistent results and questionable operator safety, the modular LightSyn Illumin8 is simple to set-up, operationally flexible and easy to use with just one single on/off switch.

Simply mounted on a standard magnetic hotplate stirrer, photochemical reactions in your LightSyn Illumin8 can be powerfully agitated and heated up to 80°C. To cater for air sensitive materials, connectors on top of the LightSyn Illumin8 allow for an inert atmosphere or vacuum to be applied to each reaction tube. These features, coupled with the ability to safely sample or make additions to each ongoing reaction, make the LightSyn Illumin8 the perfect tool for consistent and reliable photochemical reaction screening experiments.

More information online


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