Drug catalytic synthesis solution Multi wavelength LED photoreactor - photocatalytic drug production, efficient and precise
Solution Overview
Multi wavelength LED light control technology reshapes the efficiency of photocatalytic drug production. From wavelength regulation to stable operation, it meets the needs of drug production
pain point
Traditional photocatalytic reactors have a single wavelength of light source, which makes it difficult to adapt to complex drug synthesis reactions. The reaction efficiency is low and the product purity is unstable, resulting in high energy consumption and easily affecting the production cycle
Solution
The wavelength LED light reactor can accurately control the combination of different wavelength light sources, match the needs of each stage of drug synthesis, improve reaction efficiency and product purity, with low energy consumption and stable operation
Fully adapted drug production process, covering multiple types of photocatalytic reactions
From raw material synthesis to intermediate preparation, improve production efficiency
Photocatalytic synthesis of active pharmaceutical ingredients
In the synthesis of raw materials such as antibiotics and anti-tumor drugs, multi wavelength modulation is used to promote key step reactions, shorten reaction time by more than 20%, and reduce raw material loss
Preparation of drug intermediates
For the precise synthesis of chiral drug intermediates, precise light control reduces the generation of racemates, and the optical purity of the product is increased to over 99%, meeting the needs of high-end drugs
Extraction of active ingredients from natural medicines
In the photocatalytic extraction of active ingredients in plant medicine, a specific wavelength combination is used to promote the dissolution of ingredients, increase the extraction rate by 15%, and retain the activity of ingredients

Application scenarios paired with products
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Why choose our solution
Technical Trust Endorsement
Through GMP equipment certification (compliant with pharmaceutical production standards), the reaction efficiency and product purity have been tested to be superior to traditional equipment, and have been adopted by multiple pharmaceutical production lines
Multi wavelength synergy, adapted to complex reactions
It can accurately switch or combine 200-800nm wavelength light sources to match the photocatalytic requirements of different reaction stages in drug synthesis, promote the generation of active intermediates, and improve reaction conversion rates
Accurate light control, more stable product purity
The light source intensity and irradiation time can be precise to 0.1W and 1 second, avoiding side reactions caused by light intensity fluctuations. The purity deviation of the product is controlled within 0.5%, which meets pharmaceutical production standards
Low consumption and long lifespan, reducing production costs
LED light sources consume only 1/5 of traditional mercury lamps, with a lifespan of over 10000 hours, reducing equipment replacement frequency and lowering energy and maintenance costs
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