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Published on: February 10, 2023
Azide monoliths as convenient flow reactors for efficient Curtius rearrangement reactions
Marcus Baumann1, Ian R Baxendale, Steven V Ley
1Innovative Technology Centre, Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge, UK.
Researchers developed a novel azide-containing monolithic reactor for flow chemistry. This reactor is effective for performing Curtius rearrangement reactions using acid chloride inputs.
Area of Science:
- Organic Chemistry
- Chemical Engineering
- Materials Science
Background:
- Flow chemistry offers advantages in reaction control and safety.
- The Curtius rearrangement is a valuable synthetic transformation for generating amines and isocyanates.
- Developing specialized reactors can enhance the efficiency and scope of such reactions.
Purpose of the Study:
- To describe the preparation of an azide-containing monolithic reactor.
- To demonstrate the utility of this reactor in a flow chemistry setup.
- To specifically apply the reactor for conducting Curtius rearrangement reactions.
Main Methods:
- Synthesis and characterization of the azide-containing monolithic material.
- Integration of the monolith into a flow chemistry device.
- Optimization of reaction conditions for Curtius rearrangement using acid chloride precursors.
Main Results:
- Successful preparation of a stable azide-containing monolithic reactor.
- Demonstration of the reactor's capability to facilitate flow chemistry processes.
- Efficient execution of Curtius rearrangement reactions with high yields and selectivity.
Conclusions:
- The developed azide-containing monolithic reactor is a viable tool for flow chemistry.
- This reactor enables efficient and controlled Curtius rearrangement reactions.
- The approach offers a promising platform for synthesizing valuable chemical intermediates.
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