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Accelerating fragment-based library generation by coupling high-performance photoreactors with benchtop analysis.


ABSTRACT: Herein we report a workflow coupling photoredox-nickel dual-catalyzed N-arylation reactions to benchtop analysis for the efficient generation of fragment-based libraries. Technological advances in photoreactor design facilitated reliable and reproducible experimentation. Knowledge on the reactivity under previously reported reaction conditions of spirocyclic and strained heterocyclic building blocks, viewed as chemistry informers, could thus be rapidly accessed, identifying privileged or challenging scaffolds and paving the way for further exploration.

SUBMITTER: Lefebvre Q 

PROVIDER: S-EPMC7237803 | biostudies-literature | 2020

REPOSITORIES: biostudies-literature

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Accelerating fragment-based library generation by coupling high-performance photoreactors with benchtop analysis.

Lefebvre Quentin Q   Salomé Christophe C   Fessard Thomas C TC  

Beilstein journal of organic chemistry 20200512


Herein we report a workflow coupling photoredox-nickel dual-catalyzed <i>N</i>-arylation reactions to benchtop analysis for the efficient generation of fragment-based libraries. Technological advances in photoreactor design facilitated reliable and reproducible experimentation. Knowledge on the reactivity under previously reported reaction conditions of spirocyclic and strained heterocyclic building blocks, viewed as chemistry informers, could thus be rapidly accessed, identifying privileged or  ...[more]

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