Continuous processing has been demonstrated to be a superior approach when applied to fast and energetic chemical transformations. Indeed, whereas classical batch or semi-batch methods require cryogenic conditions and slow addition rates of reactive species, flow technologies enable rapid mixing of synthetic partners in a highly controlled environment. As a result, low yielding and dangerous processes in batch can be performed at scale in a cost competitive and safer continuous manner. Despite the advantages of higher quality and safety, the perennial problems of solids build-up and pipe fouling threaten the robustness and reliability of flow processes. In this contribution, a new methodology to prevent reactor fouling is reported and dis...
Driven by the economics of scale, the size of reaction vessels as the major processing apparatus of ...
Continuous-flow technologies are becoming increasingly relevant in the chemistry field. The vast arr...
Synthetic chemistry is performed almost exclusively in solution phase, with very few solid-phase or ...
Continuous processing has been demonstrated to be a superior approach when applied to fast and energ...
Highly reactive compounds in chemical production are both a blessing and a curse, as they allow fast...
Over the last two decades, flow technologies have become increasingly popular in the field of organi...
Continuous flow chemistry and continuous processes are gaining increasingly importance in pharmaceut...
Flow chemistry is typically used to enable challenging reactions which are difficult to carry out in...
In the field of organic synthesis, the advent of flow chemistry and flow microreactor technology rep...
Flow chemistry is a continually emerging and ever-growing area of synthetic organic chemistry. It pr...
Multiphase flow processing in flow reactors holds great promises for diverse applications in fine ch...
In this review recent examples on the use of flow technology for organometallic-mediated synthesis h...
The development and intensification of flow reactors are emerging as a new niche area in the pharmac...
Continuous flow reactors are enabling tools that can significantly benefit chemical reactions, espec...
Driven by the economics of scale, the size of reaction vessels as the major processing apparatus of ...
Continuous-flow technologies are becoming increasingly relevant in the chemistry field. The vast arr...
Synthetic chemistry is performed almost exclusively in solution phase, with very few solid-phase or ...
Continuous processing has been demonstrated to be a superior approach when applied to fast and energ...
Highly reactive compounds in chemical production are both a blessing and a curse, as they allow fast...
Over the last two decades, flow technologies have become increasingly popular in the field of organi...
Continuous flow chemistry and continuous processes are gaining increasingly importance in pharmaceut...
Flow chemistry is typically used to enable challenging reactions which are difficult to carry out in...
In the field of organic synthesis, the advent of flow chemistry and flow microreactor technology rep...
Flow chemistry is a continually emerging and ever-growing area of synthetic organic chemistry. It pr...
Multiphase flow processing in flow reactors holds great promises for diverse applications in fine ch...
In this review recent examples on the use of flow technology for organometallic-mediated synthesis h...
The development and intensification of flow reactors are emerging as a new niche area in the pharmac...
Continuous flow reactors are enabling tools that can significantly benefit chemical reactions, espec...
Driven by the economics of scale, the size of reaction vessels as the major processing apparatus of ...
Continuous-flow technologies are becoming increasingly relevant in the chemistry field. The vast arr...
Synthetic chemistry is performed almost exclusively in solution phase, with very few solid-phase or ...