The use of microreactor technology for continuous-flow chemistry has received a significant amount of attention in recent years. In this chapter, we discuss the important aspects of this technology and its impact on synthetic organic chemistry. Basic engineering principles, unusual reaction conditions, the use of immobilized reagents, multistep syntheses, microreactor clogging, reaction screening and self-optimization, and scale-up potential facilitated by micro flow chemistry are described
The implementation of chemical reactions in continuous mode under microfluidic conditions by the use...
Microreactors are small devices with sub-millimeter internals which have superb mass and heat transf...
Multicomponent reactions are an important tool in organic synthesis as they often allow the circumve...
The use of microreactor technology for continuous-flow chemistry has received a significant amount o...
Flow chemistry has unlocked a world of possibilities for the synthetic community, but the idea that ...
Flow chemistry is typically used to enable challenging reactions which are difficult to carry out in...
Microreactor technology and flow chemistry could play an important role in the development of green ...
Continuous-flow micro- and mesofluidic reactors come with inherent properties that can be advantageo...
Continuous-flow micro- and mesofluidic reactors come with inherent properties that can be advantageo...
The microreactor technology has the potential to change the way to perform synthetic chemistry. Effo...
In the field of organic synthesis, the advent of flow chemistry and flow microreactor technology rep...
peer reviewedContinuous-flow micro- and mesofluidic reactors come with inherent properties that can ...
Continuous-flow micro- and mesofluidic reactors come with inherent properties that can be advantageo...
In the past decade, microreaction technology has been attracted much attention to the scientific com...
It has been claimed that microreactors may one day replace the round-bottom flask. Get past the hype...
The implementation of chemical reactions in continuous mode under microfluidic conditions by the use...
Microreactors are small devices with sub-millimeter internals which have superb mass and heat transf...
Multicomponent reactions are an important tool in organic synthesis as they often allow the circumve...
The use of microreactor technology for continuous-flow chemistry has received a significant amount o...
Flow chemistry has unlocked a world of possibilities for the synthetic community, but the idea that ...
Flow chemistry is typically used to enable challenging reactions which are difficult to carry out in...
Microreactor technology and flow chemistry could play an important role in the development of green ...
Continuous-flow micro- and mesofluidic reactors come with inherent properties that can be advantageo...
Continuous-flow micro- and mesofluidic reactors come with inherent properties that can be advantageo...
The microreactor technology has the potential to change the way to perform synthetic chemistry. Effo...
In the field of organic synthesis, the advent of flow chemistry and flow microreactor technology rep...
peer reviewedContinuous-flow micro- and mesofluidic reactors come with inherent properties that can ...
Continuous-flow micro- and mesofluidic reactors come with inherent properties that can be advantageo...
In the past decade, microreaction technology has been attracted much attention to the scientific com...
It has been claimed that microreactors may one day replace the round-bottom flask. Get past the hype...
The implementation of chemical reactions in continuous mode under microfluidic conditions by the use...
Microreactors are small devices with sub-millimeter internals which have superb mass and heat transf...
Multicomponent reactions are an important tool in organic synthesis as they often allow the circumve...