In the field of organic synthesis, the advent of flow chemistry and flow microreactor technology represented a tremendous novelty in the way of thinking and performing chemical reactions, opening the doors to poorly explored or even impossible transformations using batch methods. In this Concept article, we would like to highlight the impact of flow chemistry for exploiting highly reactive organometallic reagents, and how, alongside the well-known advantages concerning safety, scalability, and productivity, flow chemistry makes possible processes that are impossible to control by using the traditional batch approach
Flow Chemistry is a powerful tool in organic synthesis. It provides great operational advantages suc...
Driven by the economics of scale, the size of reaction vessels as the major processing apparatus of ...
Organocatalytic reactions in batch and in micro(meso)reactors will be discussed, the advatages of fl...
In this review recent examples on the use of flow technology for organometallic-mediated synthesis h...
Flow chemistry is typically used to enable challenging reactions which are difficult to carry out in...
Flow chemistry is a continually emerging and ever-growing area of synthetic organic chemistry. It pr...
Flow chemistry has unlocked a world of possibilities for the synthetic community, but the idea that ...
The use of microreactor technology for continuous-flow chemistry has received a significant amount o...
Flow chemistry is a widely explored technology whose intrinsic features both facilitate and provide ...
Continuous flow reactors have earned their place as an important technology in organic synthesis, re...
Continuous flow reactors are enabling tools that can significantly benefit chemical reactions, espec...
In this review, case studies focused on syntheses of active pharmaceutical ingredients, intermediate...
Over the last two decades, flow technologies have become increasingly popular in the field of organi...
Microreactor technology and flow chemistry could play an important role in the development of green ...
Flow Chemistry is a powerful tool in organic synthesis. It provides great operational advantages suc...
Driven by the economics of scale, the size of reaction vessels as the major processing apparatus of ...
Organocatalytic reactions in batch and in micro(meso)reactors will be discussed, the advatages of fl...
In this review recent examples on the use of flow technology for organometallic-mediated synthesis h...
Flow chemistry is typically used to enable challenging reactions which are difficult to carry out in...
Flow chemistry is a continually emerging and ever-growing area of synthetic organic chemistry. It pr...
Flow chemistry has unlocked a world of possibilities for the synthetic community, but the idea that ...
The use of microreactor technology for continuous-flow chemistry has received a significant amount o...
Flow chemistry is a widely explored technology whose intrinsic features both facilitate and provide ...
Continuous flow reactors have earned their place as an important technology in organic synthesis, re...
Continuous flow reactors are enabling tools that can significantly benefit chemical reactions, espec...
In this review, case studies focused on syntheses of active pharmaceutical ingredients, intermediate...
Over the last two decades, flow technologies have become increasingly popular in the field of organi...
Microreactor technology and flow chemistry could play an important role in the development of green ...
Flow Chemistry is a powerful tool in organic synthesis. It provides great operational advantages suc...
Driven by the economics of scale, the size of reaction vessels as the major processing apparatus of ...
Organocatalytic reactions in batch and in micro(meso)reactors will be discussed, the advatages of fl...