The transfer of chirality between nanomolecules is at the core of several applications in chiral technology such as sensing and catalysis. However, the origin of this phenomenon and how exactly nanoscale objects transfer chirality to molecules in their vicinity remain largely obscure. Here, we show that the transfer of chirality for the intrinsically chiral gold cluster Au38(SR)24 is site dependent; that is, it differs depending on the ligand-binding sites. This is closely related to the dynamic nature of the ligands on the cluster surface. Using a combination of NMR techniques and molecular dynamics simulations, we could assign the four symmetry- unique ligands on the cluster. The study reveals largely different conformational dynamics of ...
The effect of chiral and achiral ligands protecting the inner Au9 core of the Au18(SR)14 cluster is ...
Chiral structures have been found as the lowest-energy isomers of bare (Au$_{28}$ and Au$_{55}) and ...
Asymmetric arrangement of metal atoms is crucial for understanding the chirality origin of chiral me...
The transfer of chirality between nanomolecules is at the core of several applications in chiral tec...
Chiral thiolate-protected gold clusters of atomic precision have gained increasing interest in recen...
Ligand exchange reactions have become a highly versatile post-synthetic strategy to accurately engin...
Over recent years, research on thiolate-protected gold clusters Aum(SR)n has gained significant inte...
The transfer of chirality from one set of molecules to another is fundamental for applications in ch...
Chiral gold nanoclusters offer significant potential for exploring chirality at a fundamental level ...
Monolayer protected metal clusters are dynamic nanoscale objects. For example, the chiral Au-38(2-PE...
Bestowing chirality to metals is central in fields such as heterogeneous catalysis and modern optics...
AbstractChirality is a geometric property of a physical, chemical, or biological object, which is no...
On the basis of density functional theory computations of the well-known chiral Au38(SR)24 nanoclust...
Based on density functional theory computations of the well-known chiral Au38(SR)24 nanocluster an...
Chirality is a fundamental property of matter with profound impact in physics, chemistry, biology, a...
The effect of chiral and achiral ligands protecting the inner Au9 core of the Au18(SR)14 cluster is ...
Chiral structures have been found as the lowest-energy isomers of bare (Au$_{28}$ and Au$_{55}) and ...
Asymmetric arrangement of metal atoms is crucial for understanding the chirality origin of chiral me...
The transfer of chirality between nanomolecules is at the core of several applications in chiral tec...
Chiral thiolate-protected gold clusters of atomic precision have gained increasing interest in recen...
Ligand exchange reactions have become a highly versatile post-synthetic strategy to accurately engin...
Over recent years, research on thiolate-protected gold clusters Aum(SR)n has gained significant inte...
The transfer of chirality from one set of molecules to another is fundamental for applications in ch...
Chiral gold nanoclusters offer significant potential for exploring chirality at a fundamental level ...
Monolayer protected metal clusters are dynamic nanoscale objects. For example, the chiral Au-38(2-PE...
Bestowing chirality to metals is central in fields such as heterogeneous catalysis and modern optics...
AbstractChirality is a geometric property of a physical, chemical, or biological object, which is no...
On the basis of density functional theory computations of the well-known chiral Au38(SR)24 nanoclust...
Based on density functional theory computations of the well-known chiral Au38(SR)24 nanocluster an...
Chirality is a fundamental property of matter with profound impact in physics, chemistry, biology, a...
The effect of chiral and achiral ligands protecting the inner Au9 core of the Au18(SR)14 cluster is ...
Chiral structures have been found as the lowest-energy isomers of bare (Au$_{28}$ and Au$_{55}) and ...
Asymmetric arrangement of metal atoms is crucial for understanding the chirality origin of chiral me...