Graphene has demonstrated broad applications due to its prominent properties. Its molecular structure makes graphene achiral. Here, we propose a direct way to prepare chiral graphene by transferring chiral structural conformation from chiral conjugated amino acids onto graphene basal plane through pi-pi interaction followed by thermal fusion. Using atomic resolution transmission electron microscopy, we estimated an areal coverage of the molecular imprints (chiral regions) up to 64 % on the basal plane of graphene (grown by chemical vapor deposition). The high concentration of molecular imprints in their single layer points to a close packing of the deposited amino acid molecules prior to "thermal fusion". Such "molecular chir...
Chirality-or 'handedness'-is a symmetry property crucial to fields as diverse as biology, ...
We produce precise chiral-edge graphene nanoribbons on Cu{111} using self-assembly and surface-direc...
All electrochemical processes are intrinsically "intelligent" on account of the selectivity achievab...
Graphene has demonstrated broad applications due to its prominent properties. Its molecular structur...
This article is part of the themed collection: 2020 Chemical Science HOT Article Collection.Fine man...
Chirality is a fascinating property present in naturally occurring and artificial molecules and mate...
Nanocorrals created by scanning probe lithography on covalently modified graphite surfaces are used ...
We propose a new method of chiral separation using functionalized nanoporous graphene as an example....
As a basic characteristic of the natural environment and living matter, chirality has been used in v...
Chiral templating and enantioselective separations are demonstrated on graphene surfaces as directed...
Graphene (G) has established itself as an exciting prospect for a broad range of applications owing ...
By using DNA or a peptide as a common probe, graphene-based biosensing has made significant progress...
Chirality is a major field of research of chemical biology and is essential in pharmacology. Accordi...
As a basic characteristic of the natural environment and living matter, chirality has been used in v...
Chirality is an essential natural attribute of organisms. Chiral molecules exhibit differences in bi...
Chirality-or 'handedness'-is a symmetry property crucial to fields as diverse as biology, ...
We produce precise chiral-edge graphene nanoribbons on Cu{111} using self-assembly and surface-direc...
All electrochemical processes are intrinsically "intelligent" on account of the selectivity achievab...
Graphene has demonstrated broad applications due to its prominent properties. Its molecular structur...
This article is part of the themed collection: 2020 Chemical Science HOT Article Collection.Fine man...
Chirality is a fascinating property present in naturally occurring and artificial molecules and mate...
Nanocorrals created by scanning probe lithography on covalently modified graphite surfaces are used ...
We propose a new method of chiral separation using functionalized nanoporous graphene as an example....
As a basic characteristic of the natural environment and living matter, chirality has been used in v...
Chiral templating and enantioselective separations are demonstrated on graphene surfaces as directed...
Graphene (G) has established itself as an exciting prospect for a broad range of applications owing ...
By using DNA or a peptide as a common probe, graphene-based biosensing has made significant progress...
Chirality is a major field of research of chemical biology and is essential in pharmacology. Accordi...
As a basic characteristic of the natural environment and living matter, chirality has been used in v...
Chirality is an essential natural attribute of organisms. Chiral molecules exhibit differences in bi...
Chirality-or 'handedness'-is a symmetry property crucial to fields as diverse as biology, ...
We produce precise chiral-edge graphene nanoribbons on Cu{111} using self-assembly and surface-direc...
All electrochemical processes are intrinsically "intelligent" on account of the selectivity achievab...