Conformational Study of N,N′-Diacyl Bispidines and Dioxo Bis-bispidines: Planar Chirality and Molecular Switching
Zhuo Wang, Md. Jahirul Islam, V. Nicholas Vukotic, Matthew Revington
Abstract
Zhuo Wang, Md. Jahirul Islam, V. Nicholas Vukotic, Matthew Revington
Abstract
N,N'-Diacyl bispidines exhibit chirality in the absence of a chiral center and axis. Conformational analysis indicates planar chirality in the molecular structure as a result of open-ended chiral planes, which has been confirmed by X-ray diffraction studies. Substantial chiral-achiral molecular switching is observed in di(haloacetyl) bispidines upon changing the solvent polarity. Tethering the chiral planes with a bispidine linker alters the planar chirality significantly and renders the resulting bis-bispidine macrocycles achiral.
OpenAlex reports 13 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
N,N'-Diacyl bispidines exhibit chirality in the absence of a chiral center and axis. Conformational analysis indicates planar chirality in the molecular structure as a result of open-ended chiral planes, which has been confirmed by X-ray diffraction studies. Substantial chiral-achiral molecular switching is observed in di(haloacetyl) bispidines upon changing the solvent polarity. Tethering the chiral planes with a bispidine linker alters the planar chirality significantly and renders the resulting bis-bispidine macrocycles achiral.
Key concepts: Chemistry, Chirality (physics), Planar chirality, Planar, Stereochemistry, Enantioselective synthesis, Organic chemistry, Catalysis