Contributing to the acceleration of the development and prototyping of new synthetic products!
The "Flow Microreactor System X-1" is a microreactor system for optimal condition search using continuous flow reactions, replacing conventional batch reactions. It contributes to speeding up the development and prototyping of new synthetic products. It enables automatic execution under 20 different reaction conditions, allowing for the acquisition of optimal conditions in a short time. By using the obtained optimal conditions for continuous operation, it is possible to synthesize over 100 grams of samples. Additionally, the device is compact and can be easily installed in a typical draft chamber. 【Features】 - Contributes to speeding up the development and prototyping of synthetic products - Enables automatic execution under 20 different reaction conditions - Capable of synthesizing over 100 grams of samples continuously - Compact design - Easy installation in a typical draft chamber *For more details, please refer to the catalog or feel free to contact us.
Inquire About This Product
basic information
【Examples of Reactions】 ■Giese Reaction ■Azidation Reaction ■Sonogashira Coupling Reaction, etc. *For more details, please refer to the catalog or feel free to contact us.
Price range
Delivery Time
Applications/Examples of results
【Examples of Reactions】 ■Giese Reaction ■Azidation Reaction ■Sonogashira Coupling Reaction, etc. *For more details, please refer to the catalog or feel free to contact us.
catalog(1)
Download All CatalogsCompany information
Michs Corporation is a company primarily engaged in the development, manufacturing, sales, and consulting services related to microreactor devices, chemical synthesis, and chemical reaction equipment and systems. We offer a variety of products, including the flow-type microreactor system "Automated Flow Reactor X-1" for optimizing conditions through continuous flow reactions as an alternative to traditional batch reactions, and the "β-type micro mixer turbulent type" that enables efficient mixing with low pressure loss.