We demonstrate the reversible intercalation of CO between a hexagonal boron nitride (h-BN) monolayer and a Rh(111) substrate above a threshold CO pressure of 0.01 mbar at room temperature. The intercalation of CO results in the flattening of the originally corrugated h-BN nanomesh and an electronic decoupling of the BN layer from the Rh substrate. The intercalated CO molecules assume a coverage and adsorption site distribution comparable to that on the free Rh(111) surface at similar conditions. The pristine h-BN nanomesh is reinstated upon heating to above 625 K. These observations may open up opportunities for a reversible tuning of the electronic and structural properties of monolayer BN films
Intercalation of metal atoms into the interface of graphene and its supporting substrate has become ...
Intercalation of molecules into layered materials is actively researched in materials science, chemi...
The process of penetration of cobalt atoms through the h-BN nanomesh on Rh(111) is investigated with...
We have deposited Sn on corrugated hexagonal boron nitride (h-BN) nanomeshs formed on Rh(111) and fo...
On the path to functional graphene electronics, suitable templates for chemical vapor deposition (CV...
Hexagonal boron nitride (h-BN) is an insulating compound that is structurally similar to graphite. L...
Positioning nanostructures and functional molecules at surfaces and engineering their local coupling...
On Rh(111), a monolayer of hexagonal boron nitride (h-BN, isoelectronic with graphene) forms a so-ca...
Using low-temperature scanning tunneling microscopy, we show that monolayer hexagonal boron nitride ...
Hexagonal boron nitride (h-BN) nanomesh, a two-dimensional insulating monolayer, grown onthe (111) s...
We demonstrate that freeing a single-atom thick layer of hexagonal boron nitride (h-BN) from tight c...
In heterogeneous catalysis molecule–metal interaction is often modulated through structural modifica...
In heterogeneous catalysis molecule-metal interaction is often modulated through structural modifica...
The interface between a two-dimensional (2D) atomic crystal and a metal surface can be regarded as a...
behavior is a key challenge in nanotechnology. The recently discovered BN nanomesh on the Rh(111) su...
Intercalation of metal atoms into the interface of graphene and its supporting substrate has become ...
Intercalation of molecules into layered materials is actively researched in materials science, chemi...
The process of penetration of cobalt atoms through the h-BN nanomesh on Rh(111) is investigated with...
We have deposited Sn on corrugated hexagonal boron nitride (h-BN) nanomeshs formed on Rh(111) and fo...
On the path to functional graphene electronics, suitable templates for chemical vapor deposition (CV...
Hexagonal boron nitride (h-BN) is an insulating compound that is structurally similar to graphite. L...
Positioning nanostructures and functional molecules at surfaces and engineering their local coupling...
On Rh(111), a monolayer of hexagonal boron nitride (h-BN, isoelectronic with graphene) forms a so-ca...
Using low-temperature scanning tunneling microscopy, we show that monolayer hexagonal boron nitride ...
Hexagonal boron nitride (h-BN) nanomesh, a two-dimensional insulating monolayer, grown onthe (111) s...
We demonstrate that freeing a single-atom thick layer of hexagonal boron nitride (h-BN) from tight c...
In heterogeneous catalysis molecule–metal interaction is often modulated through structural modifica...
In heterogeneous catalysis molecule-metal interaction is often modulated through structural modifica...
The interface between a two-dimensional (2D) atomic crystal and a metal surface can be regarded as a...
behavior is a key challenge in nanotechnology. The recently discovered BN nanomesh on the Rh(111) su...
Intercalation of metal atoms into the interface of graphene and its supporting substrate has become ...
Intercalation of molecules into layered materials is actively researched in materials science, chemi...
The process of penetration of cobalt atoms through the h-BN nanomesh on Rh(111) is investigated with...