Atomic‐resolution transmission electron microscopy was used to identify individual Au9 clusters on a sulfur‐functionalized graphene surface. The clusters were preformed in solution and covalently attached to the surface without any dispersion or aggregation. Comparison of the experimental images with simulations allowed the rotational motion, without lateral displacement, of individual clusters to be discerned, thereby demonstrating a robust covalent attachment of intact clusters to the graphene surface
The atomically precise control over the size, shape and structure of nanographenes (NGs) or the intr...
In our study, graphene oxide is synthesized by Hummers method. And then, carboxylic acid functionali...
Graphene nanoribbons (GNRs) can be synthesized with atomic precision through on-surface chemistry of...
Atomic‐resolution transmission electron microscopy was used to identify individual Au9 clusters on a...
Hybrid nanostructures of size-selected nanoparticles (NPs) and 2D materials exhibit striking physica...
International audienceThis paper describes the development of a novel method of producing nanocompos...
As a one-atom thick, mechanically strong, and chemically stable material with unique electronic prop...
We investigated the interaction between size-selected Au2 and Au3 clusters and graphene. Hereto pref...
We show how Gd based metallofullerene (Gd3N@C80) molecules can be used to create single adatoms and ...
The interaction of ultrasmall metal clusters with surfaces of graphene is important for developing p...
ABSTRACT: The interaction of ultrasmall metal clusters with surfaces of graphene is important for de...
The development of gold nanoclusters has made remarkable progress enriching the research field of na...
Graphene nanosheets were prepared using a modified Hummer's method, and Au-graphene nanocomposites w...
Graphene nanoribbons (GNRs) can be synthesized with atomic precision through on-surface chemistry of...
[EN] The structure and stabilization of a series of gold (Au-n) clusters (where n = 1, 5, 6, 19 and ...
The atomically precise control over the size, shape and structure of nanographenes (NGs) or the intr...
In our study, graphene oxide is synthesized by Hummers method. And then, carboxylic acid functionali...
Graphene nanoribbons (GNRs) can be synthesized with atomic precision through on-surface chemistry of...
Atomic‐resolution transmission electron microscopy was used to identify individual Au9 clusters on a...
Hybrid nanostructures of size-selected nanoparticles (NPs) and 2D materials exhibit striking physica...
International audienceThis paper describes the development of a novel method of producing nanocompos...
As a one-atom thick, mechanically strong, and chemically stable material with unique electronic prop...
We investigated the interaction between size-selected Au2 and Au3 clusters and graphene. Hereto pref...
We show how Gd based metallofullerene (Gd3N@C80) molecules can be used to create single adatoms and ...
The interaction of ultrasmall metal clusters with surfaces of graphene is important for developing p...
ABSTRACT: The interaction of ultrasmall metal clusters with surfaces of graphene is important for de...
The development of gold nanoclusters has made remarkable progress enriching the research field of na...
Graphene nanosheets were prepared using a modified Hummer's method, and Au-graphene nanocomposites w...
Graphene nanoribbons (GNRs) can be synthesized with atomic precision through on-surface chemistry of...
[EN] The structure and stabilization of a series of gold (Au-n) clusters (where n = 1, 5, 6, 19 and ...
The atomically precise control over the size, shape and structure of nanographenes (NGs) or the intr...
In our study, graphene oxide is synthesized by Hummers method. And then, carboxylic acid functionali...
Graphene nanoribbons (GNRs) can be synthesized with atomic precision through on-surface chemistry of...