AI Article Synopsis

  • Axial chirality is significant in chemistry; this study combines dynamic covalent chemistry with axial chirality to create a platform for detecting various mononucleophiles.
  • An equilibrium mechanism between an open aldehyde and its cyclic hemiaminal facilitates the efficient incorporation of diverse nucleophiles like alcohols and amines.
  • The research demonstrates how external stimuli can influence selectivity, and it reports chiral analytes' handedness and enantiomeric excess values through circular dichroism, with potential applications in assembly, sensing, and labeling.

Article Abstract

Axial chirality is a prevalent and important phenomenon in chemistry. Herein we report a combination of dynamic covalent chemistry and axial chirality for the development of a versatile platform for the binding and chirality sensing of multiple classes of mononucleophiles. An equilibrium between an open aldehyde and its cyclic hemiaminal within biphenyl derivatives enabled the dynamic incorporation of a broad range of alcohols, thiols, primary amines, and secondary amines with high efficiency. Selectivity toward different classes of nucleophiles was also achieved by regulating the distinct reactivity of the system with external stimuli. Through induced helicity as a result of central-to-axial chirality transfer, the handedness and ee values of chiral monoalcohol and monoamine analytes were reported by circular dichroism. The strategies introduced herein should find application in many contexts, including assembly, sensing, and labeling.

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Source
http://dx.doi.org/10.1002/anie.201711602DOI Listing

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