Shortening reaction time and improving yield! It can be carried out using methods suitable for the reaction.
Our company has both batch and flow-type photoreaction devices, allowing us to carry out reactions using the most suitable methods. In the past, we have developed flow-type photoreactions for the synthesis of phenazines, achieving shorter reaction times and improved yields compared to batch methods. Based on these results, we propose improvements for effective synthesis by selecting appropriate techniques tailored to the characteristics of photoreactions. 【Features】 ■ Equipped with both batch and flow-type photoreaction devices ■ Capable of conducting reactions using suitable methods ■ Reduction in reaction time and improvement in yield compared to batch methods ■ Selection of appropriate techniques based on the characteristics of photoreactions ■ Proposals for improvements towards effective synthesis *For more details, please refer to the related links page or feel free to contact us.
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【Effects】 ■Reduction of reaction time ■Easier purification ■Improvement in yield ■Easier scale-up ■The target product was obtained with comparable yield without using the PO that was previously used to increase yield in batch photoreactions. *For more details, please refer to the related link page or feel free to contact us.
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Nerd Research Institute is a contract synthesis company that supports research and development. We custom synthesize compounds that are not commercially available and assist research and development in a wide range of fields through chemical synthesis. In our business style, highly specialized researchers directly listen to the voices of our customers, share the challenges that need to be addressed, and propose solutions while progressing with the work. If you are having trouble with obtaining compounds or industrialization processes, please feel free to contact us. We broadly support contract synthesis for pharmaceuticals, cosmetics, pesticides, OLED materials, automotive materials, battery materials, medical device materials, bio-related reagents, regenerative medicine, and biomaterials.