Abstract:Conspectus
In recent years, a steadily growing number of chemists, from both
academia and industry, have dedicated their research to the development
of continuous flow processes performed in milli- or microreactors.
The common availability of continuous flow equipment at virtually
all scales and affordable cost has additionally impacted this trend.
Furthermore, regulatory agencies such as the United States Food and
Drug Administration actively encourage continuous manufacturing of
active pharmace… Show more
“…The ''generator'' concept is commonly used to indicate a module for the continuous in situ production of hazardous materials. 25 Here, we expand this concept to include all reactive intermediates that can be generated in situ and on-demand.…”
The intrinsic attributes of flow chemistry that facilitate and provide reproducible access to a range of processes are best exploited using modules targeting an overall effect: a selective transformation or the generation of a reactive intermediate.
“…The ''generator'' concept is commonly used to indicate a module for the continuous in situ production of hazardous materials. 25 Here, we expand this concept to include all reactive intermediates that can be generated in situ and on-demand.…”
The intrinsic attributes of flow chemistry that facilitate and provide reproducible access to a range of processes are best exploited using modules targeting an overall effect: a selective transformation or the generation of a reactive intermediate.
“…65 With increasingly restrictive legislations both at the R&D and commercial scales, the use of reactive and potentially hazardous chemicals has become limiting if not impossible with conventional batch reactors. The concept of chemical generators under continuous flow conditions has been extensively documented by Kappe, [66][67][68][69][70][71][72] hence providing a robust answer for exploiting reactive intermediates yet benefiting from all the safety and process advantages of continuous flow operation. A continuous flow chemical generator actually relies on stable and widely available precursors and on the concatenation of upstream operations aiming at the preparation of unstable, toxic or reactive chemicals, which are next immediately consumed within downstream operations (Fig.…”
The unique reactivity profile of -chloronitroso derivatives is expressed to its fullest potential through the development of an integrated, modular and scalable continuous flow process for the electrophilic α-aminohydroxylation of...
“…Apart from increased safety and scalability, reaction telescoping is one of the most attractive features of flow synthesis allowing for streamlined routes to minimize the need for the isolation and handling of potentially unstable or harmful intermediates [ 10 – 13 ]. Importantly, recent applications have extended from telescoping chemical transformations to also integrate bioassays [ 14 ], inline purification [ 15 ] and formulation stages [ 16 ].…”
A continuous flow process is presented that couples a Curtius rearrangement step with a biocatalytic impurity tagging strategy to produce a series of valuable Cbz-carbamate products. Immobilized CALB was exploited as a robust hydrolase to transform residual benzyl alcohol into easily separable benzyl butyrate. The resulting telescoped flow process was effectively applied across a series of acid substrates rendering the desired carbamate structures in high yield and purity. The derivatization of these products via complementary flow-based Michael addition reactions furthermore demonstrated the creation of β-amino acid species. This strategy thus highlights the applicability of this work towards the creation of important chemical building blocks for the pharmaceutical and speciality chemical industries.
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