We report the use of helicene with an intrinsic helical molecular structure to prepare covalent organic cages via imine condensation. The organic cages revealed a [3+2]-type architecture containing a triple-stranded helical structure with three helicene units arranged in a propeller-like fashion with the framework integrally twisted. Such structural chirality was retained upon dissolution in organic solvents, as indicated by a strong diastereotopy effect in proton NMR and unique Cotton effects in circular dichroism spectra. Further study on chiral adsorption showed that the chiral organic cages possess considerable enantioselectivity toward a series of aromatic racemates
In this work, we have been interested in two different topics to make chiral conducting materials: t...
The synthesis and chiroptical properties of a series of enantiomerically pure, C2-symmetrical carbo[...
Biomolecules such as α-helices are exclusively right-handed without contamination by their left-hand...
We report the use of helicene with an intrinsic helical molecular structure to prepare covalent orga...
The endeavor to enhance utility of organic molecular cages involves the evolution of them into highe...
The role of the helicity of small molecules in enantioselective catalysis, molecular recognition, se...
Chiral nanosized confinements play a major role for enantioselective recognition and reaction contro...
The endeavor to enhance utility of organic molecular cages involves the evolution of them into highe...
Chiral nanosized confinements play a major role for enantioselective recognition and reaction contro...
International audienceA short and efficient synthetic pathway leading to a new chiral π-conjugated s...
The self-assembly of enantiopure pyridyl-functionalized metallosalan units affords a homochiral heli...
We report a molecular design and concept using π‐system elongation and steric effects from helicenes...
Helicenes are unique helical chromophores possessing advanced and well-controlled spectral and chemi...
International audienceWe report a molecular design and concept using p-system elongation and steric ...
International audienceA one-step synthesis of a nanographene propeller with a D 3-symmetry was obtai...
In this work, we have been interested in two different topics to make chiral conducting materials: t...
The synthesis and chiroptical properties of a series of enantiomerically pure, C2-symmetrical carbo[...
Biomolecules such as α-helices are exclusively right-handed without contamination by their left-hand...
We report the use of helicene with an intrinsic helical molecular structure to prepare covalent orga...
The endeavor to enhance utility of organic molecular cages involves the evolution of them into highe...
The role of the helicity of small molecules in enantioselective catalysis, molecular recognition, se...
Chiral nanosized confinements play a major role for enantioselective recognition and reaction contro...
The endeavor to enhance utility of organic molecular cages involves the evolution of them into highe...
Chiral nanosized confinements play a major role for enantioselective recognition and reaction contro...
International audienceA short and efficient synthetic pathway leading to a new chiral π-conjugated s...
The self-assembly of enantiopure pyridyl-functionalized metallosalan units affords a homochiral heli...
We report a molecular design and concept using π‐system elongation and steric effects from helicenes...
Helicenes are unique helical chromophores possessing advanced and well-controlled spectral and chemi...
International audienceWe report a molecular design and concept using p-system elongation and steric ...
International audienceA one-step synthesis of a nanographene propeller with a D 3-symmetry was obtai...
In this work, we have been interested in two different topics to make chiral conducting materials: t...
The synthesis and chiroptical properties of a series of enantiomerically pure, C2-symmetrical carbo[...
Biomolecules such as α-helices are exclusively right-handed without contamination by their left-hand...