Nanocorrals created by scanning probe lithography on covalently modified graphite surfaces are used to induce a chiral bias in the enantiomorphic assembly of a prochiral molecule at the liquid/graphite interface. By controlling the orientation of the nanocorrals with respect to the underlying graphite surface, the nanocorral handedness can be freely chosen and thus a chiral bias in molecular self-assembly is created at an achiral surface solely by the scanning probe lithography process.status: publishe
Hybrid silica-organic nanohelices are used to organize a large variety of nonchiral small organic mo...
In many colloidal systems, an orientationally ordered nematic (N) phase emerges fromthe isotropic (I...
The monolayer formation of a chiral oligo(p-phenylene vinylene)-substituted hexaarylbenzene with 24 ...
Nanocorrals created by scanning probe lithography on covalently modified graphite surfaces are used ...
Control over polymorph formation in the crystallization of organic molecules remains a huge scientif...
This article is part of the themed collection: 2020 Chemical Science HOT Article Collection.Fine man...
Since chirality plays a crucial role in life and life s chemistry, it has been an important research...
Chirality, familiar to all chemists, is usually applied to molecules or assemblies of molecules and ...
A dominant theme within the research on two-dimensional chirality is the sergeant–soldiers principle...
An achiral oligo(p-phenylene vinylene) derivative with a ureido-triazine hydrogen bonding unit self-...
none8siInduction, transmission, and manipulation of chirality in molecular systems are well known, ...
Chiral induction and amplification in surface-confined supramolecular monolayers are investigated at...
Graphene has demonstrated broad applications due to its prominent properties. Its molecular structur...
In this study molecular modeling is used to investigate the transfer of chirality from the molecular...
Hybrid silica-organic nanohelices are used to organize a large variety of nonchiral small organic mo...
In many colloidal systems, an orientationally ordered nematic (N) phase emerges fromthe isotropic (I...
The monolayer formation of a chiral oligo(p-phenylene vinylene)-substituted hexaarylbenzene with 24 ...
Nanocorrals created by scanning probe lithography on covalently modified graphite surfaces are used ...
Control over polymorph formation in the crystallization of organic molecules remains a huge scientif...
This article is part of the themed collection: 2020 Chemical Science HOT Article Collection.Fine man...
Since chirality plays a crucial role in life and life s chemistry, it has been an important research...
Chirality, familiar to all chemists, is usually applied to molecules or assemblies of molecules and ...
A dominant theme within the research on two-dimensional chirality is the sergeant–soldiers principle...
An achiral oligo(p-phenylene vinylene) derivative with a ureido-triazine hydrogen bonding unit self-...
none8siInduction, transmission, and manipulation of chirality in molecular systems are well known, ...
Chiral induction and amplification in surface-confined supramolecular monolayers are investigated at...
Graphene has demonstrated broad applications due to its prominent properties. Its molecular structur...
In this study molecular modeling is used to investigate the transfer of chirality from the molecular...
Hybrid silica-organic nanohelices are used to organize a large variety of nonchiral small organic mo...
In many colloidal systems, an orientationally ordered nematic (N) phase emerges fromthe isotropic (I...
The monolayer formation of a chiral oligo(p-phenylene vinylene)-substituted hexaarylbenzene with 24 ...