Chiral recognition among helical molecules is of essential importance in many chemical and biochemical processes. The complexity necessitates investigating manageable model systems for unveiling the fundamental principles of chiral recognition at the molecular level. Here, we reported chiral recognition in the self-assembly of enantiopure and racemic hexahelicene on a Au(111) surface. Combing scanning tunneling microscopy (STM) and atomic force microscopy (AFM) measurements, the asymmetric heterochiral trimers were observed as a new type of building block in racemic helicene self-assembly on Au(111). The intermolecular recognition of the heterochiral trimer was investigated upon manual separation so that the absolute configuration of each h...
Gaining insight into molecular recognition at the molecular level, in particular, during nucleation ...
Transfer of molecular chirality to supramolecular chirality at nanoscale and microscale by chemical ...
Helicenes and heterohelicenes, which present fascinating left-or right-handed chiral helical structu...
Insight into recognition among helical molecules is highly relevant for understanding chiral separat...
Despite the vast development of stereochemistry it remains a great challenge to predict the fate of ...
Understanding the principles of molecular recognition is a difficult task and calls for investigatio...
The performance of organic nanostructures is closely related to the organization of the functional m...
Resolution of enantiomers of chiral compounds via crystallization is the dominant method in chemical...
Diastereomeric interactions in 2D crystals formed at solid surfaces serve as excellent models for u...
Chiral recognition as well as chirality transfer in supramolecular self-assembly and on-surface coor...
Chiral recognition as well as chirality transfer in supramolecular self-assembly and on-surface coor...
The chirality of molecular structures is paramount in many phenomena, including enantioselective rea...
Birds of a feather flock together: STM and DFT studies provide the first example of spontaneous chir...
Chirality is a topic extensively studied in chemistry, biology, and pharmacology. It is encountered ...
We report the observation of spontaneous chiral symmetry breaking within ordered, racemic monolayers...
Gaining insight into molecular recognition at the molecular level, in particular, during nucleation ...
Transfer of molecular chirality to supramolecular chirality at nanoscale and microscale by chemical ...
Helicenes and heterohelicenes, which present fascinating left-or right-handed chiral helical structu...
Insight into recognition among helical molecules is highly relevant for understanding chiral separat...
Despite the vast development of stereochemistry it remains a great challenge to predict the fate of ...
Understanding the principles of molecular recognition is a difficult task and calls for investigatio...
The performance of organic nanostructures is closely related to the organization of the functional m...
Resolution of enantiomers of chiral compounds via crystallization is the dominant method in chemical...
Diastereomeric interactions in 2D crystals formed at solid surfaces serve as excellent models for u...
Chiral recognition as well as chirality transfer in supramolecular self-assembly and on-surface coor...
Chiral recognition as well as chirality transfer in supramolecular self-assembly and on-surface coor...
The chirality of molecular structures is paramount in many phenomena, including enantioselective rea...
Birds of a feather flock together: STM and DFT studies provide the first example of spontaneous chir...
Chirality is a topic extensively studied in chemistry, biology, and pharmacology. It is encountered ...
We report the observation of spontaneous chiral symmetry breaking within ordered, racemic monolayers...
Gaining insight into molecular recognition at the molecular level, in particular, during nucleation ...
Transfer of molecular chirality to supramolecular chirality at nanoscale and microscale by chemical ...
Helicenes and heterohelicenes, which present fascinating left-or right-handed chiral helical structu...