Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Engineering chiral induction in centrally functionalized ortho-phenylenes

View through CrossRef
Work on foldamers, non-biological oligomers that mimic the hierarchical structure of biomacromolecules, continues to yield new architectures of ever increasing complexity. o-Phenylenes, a class of helical aromatic foldamers, are well-suited to this area because of their structural simplicity and the straightforward characterization of their folding in solution. However, control of structure requires, by definition, control over folding handedness. Control over o-phenylene twist sense is currently lacking. While chiral induction from groups at o-phenylene termini has been demonstrated, it would be useful to instead direct twisting from internal positions in order to leave the ends free. Here, we explore chiral induction in a series of o-phenylenes with chiral imides at their centers. Conformational behavior has been studied by NMR and CD spectroscopies and DFT calculations. Chiral induction in otherwise unfunctionalized o-phenylenes is generally poor. However, strategic functionalization of the helix surface with trifluoromethyl and methyl groups allows it to better interact with the imide groups, greatly increasing diastereomeric excesses. The sense of chiral induction is consistent with computational models that suggest that it primarily arises from a steric effect.
Title: Engineering chiral induction in centrally functionalized ortho-phenylenes
Description:
Work on foldamers, non-biological oligomers that mimic the hierarchical structure of biomacromolecules, continues to yield new architectures of ever increasing complexity.
o-Phenylenes, a class of helical aromatic foldamers, are well-suited to this area because of their structural simplicity and the straightforward characterization of their folding in solution.
However, control of structure requires, by definition, control over folding handedness.
Control over o-phenylene twist sense is currently lacking.
While chiral induction from groups at o-phenylene termini has been demonstrated, it would be useful to instead direct twisting from internal positions in order to leave the ends free.
Here, we explore chiral induction in a series of o-phenylenes with chiral imides at their centers.
Conformational behavior has been studied by NMR and CD spectroscopies and DFT calculations.
Chiral induction in otherwise unfunctionalized o-phenylenes is generally poor.
However, strategic functionalization of the helix surface with trifluoromethyl and methyl groups allows it to better interact with the imide groups, greatly increasing diastereomeric excesses.
The sense of chiral induction is consistent with computational models that suggest that it primarily arises from a steric effect.

Related Results

Advances on broadband and resonant chiral metasurfaces
Advances on broadband and resonant chiral metasurfaces
Abstract Chirality describes mirror symmetry breaking in geometric structures or certain physical quantities. The interaction between chiral structure and chiral ...
Chiral Ionic Liquids as Stationary Phases in Electrophoretic Separations
Chiral Ionic Liquids as Stationary Phases in Electrophoretic Separations
Ionic liquids (ILs) are exceptional solvents having melting points at or below 100 0C. They are completely made up of ions, often consisting of an organic cation and an inorganic o...
Design, synthesis and evaluation in enantioselective catalysis of diverse adjustable axially chiral biphenyl ligands and catalysts
Design, synthesis and evaluation in enantioselective catalysis of diverse adjustable axially chiral biphenyl ligands and catalysts
Chiral compounds widely occur in biomolecules, natural products and drugs, and acquisition of chirality in the chiral molecules highly depends on chiral inducers including chiral l...
Chiral liquid crystal-MOF composites for electrochemical recognition of enantiomers
Chiral liquid crystal-MOF composites for electrochemical recognition of enantiomers
Biological systems rely on the exclusive use of L-configured biomolecules for precise molecular recognition, whereas exposure to D-enantiomers can disrupt immune and metabolic proc...
Laminar and Turbulent Dynamos in Chiral Magnetohydrodynamics. I. Theory
Laminar and Turbulent Dynamos in Chiral Magnetohydrodynamics. I. Theory
Abstract The magnetohydrodynamic (MHD) description of plasmas with relativistic particles necessarily includes an additional new field, the chiral chemical potential...
Chiral Ionic Liquids and Chromatography: Synergistic Effects in Enantioseparations
Chiral Ionic Liquids and Chromatography: Synergistic Effects in Enantioseparations
Chiral ionic liquids (CILs) are a subcategory of ionic liquids that possess a chiral moiety. The need for chiral separations in several industries, including pharmaceutical, food, ...

Back to Top